Reaching the precision limit with tensor-based wavefront shaping

Perturbations in complex media, due to their own dynamical evolution or to external effects, are often seen as detrimental. Therefore, a common strategy, especially for telecommunication and imaging applications, is to limit the sensitivity to those perturbations in order to avoid them. Here, instea...

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Published in:Nature communications Vol. 15; no. 1; pp. 6319 - 8
Main Authors: Gutiérrez-Cuevas, Rodrigo, Bouchet, Dorian, de Rosny, Julien, Popoff, Sébastien M.
Format: Journal Article
Language:English
Published: London Nature Publishing Group UK 26-07-2024
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Abstract Perturbations in complex media, due to their own dynamical evolution or to external effects, are often seen as detrimental. Therefore, a common strategy, especially for telecommunication and imaging applications, is to limit the sensitivity to those perturbations in order to avoid them. Here, instead, we consider enhancing the interaction between light and perturbations to produce the largest change in the output intensity distribution. Our work hinges on the use of tensor-based techniques, presently at the forefront of machine learning explorations, to study intensity-based measurements where its quadratic relationship to the field prevents the use of standard matrix methods. With this tensor-based framework, we can identify the maximum-information intensity channel which maximizes the change in its output intensity distribution and the Fisher information encoded in it about a given perturbation. We further demonstrate experimentally its superiority for robust and precise sensing applications. Additionally, we derive the appropriate strategy to reach the precision limit for intensity-based measurements, leading to an increase in Fisher information by more than four orders of magnitude compared to the mean for random wavefronts when measured with the pixels of a camera. Authors employ tensor decomposition techniques to maximise the interaction between light and perturbations in complex media as a strategy for identifying the maximum-information intensity channel, which maximizes the change in the output intensity distribution.
AbstractList Perturbations in complex media, due to their own dynamical evolution or to external effects, are often seen as detrimental. Therefore, a common strategy, especially for telecommunication and imaging applications, is to limit the sensitivity to those perturbations in order to avoid them. Here, instead, we consider enhancing the interaction between light and perturbations to produce the largest change in the output intensity distribution. Our work hinges on the use of tensor-based techniques, presently at the forefront of machine learning explorations, to study intensity-based measurements where its quadratic relationship to the field prevents the use of standard matrix methods. With this tensor-based framework, we can identify the maximum-information intensity channel which maximizes the change in its output intensity distribution and the Fisher information encoded in it about a given perturbation. We further demonstrate experimentally its superiority for robust and precise sensing applications. Additionally, we derive the appropriate strategy to reach the precision limit for intensity-based measurements, leading to an increase in Fisher information by more than four orders of magnitude compared to the mean for random wavefronts when measured with the pixels of a camera.
Perturbations in complex media, due to their own dynamical evolution or to external effects, are often seen as detrimental. Therefore, a common strategy, especially for telecommunication and imaging applications, is to limit the sensitivity to those perturbations in order to avoid them. Here, instead, we consider enhancing the interaction between light and perturbations to produce the largest change in the output intensity distribution. Our work hinges on the use of tensor-based techniques, presently at the forefront of machine learning explorations, to study intensity-based measurements where its quadratic relationship to the field prevents the use of standard matrix methods. With this tensor-based framework, we can identify the maximum-information intensity channel which maximizes the change in its output intensity distribution and the Fisher information encoded in it about a given perturbation. We further demonstrate experimentally its superiority for robust and precise sensing applications. Additionally, we derive the appropriate strategy to reach the precision limit for intensity-based measurements, leading to an increase in Fisher information by more than four orders of magnitude compared to the mean for random wavefronts when measured with the pixels of a camera.Perturbations in complex media, due to their own dynamical evolution or to external effects, are often seen as detrimental. Therefore, a common strategy, especially for telecommunication and imaging applications, is to limit the sensitivity to those perturbations in order to avoid them. Here, instead, we consider enhancing the interaction between light and perturbations to produce the largest change in the output intensity distribution. Our work hinges on the use of tensor-based techniques, presently at the forefront of machine learning explorations, to study intensity-based measurements where its quadratic relationship to the field prevents the use of standard matrix methods. With this tensor-based framework, we can identify the maximum-information intensity channel which maximizes the change in its output intensity distribution and the Fisher information encoded in it about a given perturbation. We further demonstrate experimentally its superiority for robust and precise sensing applications. Additionally, we derive the appropriate strategy to reach the precision limit for intensity-based measurements, leading to an increase in Fisher information by more than four orders of magnitude compared to the mean for random wavefronts when measured with the pixels of a camera.
Perturbations in complex media, due to their own dynamical evolution or to external effects, are often seen as detrimental. Therefore, a common strategy, especially for telecommunication and imaging applications, is to limit the sensitivity to those perturbations in order to avoid them. Here, instead, we consider enhancing the interaction between light and perturbations to produce the largest change in the output intensity distribution. Our work hinges on the use of tensor-based techniques, presently at the forefront of machine learning explorations, to study intensity-based measurements where its quadratic relationship to the field prevents the use of standard matrix methods. With this tensor-based framework, we can identify the maximum-information intensity channel which maximizes the change in its output intensity distribution and the Fisher information encoded in it about a given perturbation. We further demonstrate experimentally its superiority for robust and precise sensing applications. Additionally, we derive the appropriate strategy to reach the precision limit for intensity-based measurements, leading to an increase in Fisher information by more than four orders of magnitude compared to the mean for random wavefronts when measured with the pixels of a camera.Authors employ tensor decomposition techniques to maximise the interaction between light and perturbations in complex media as a strategy for identifying the maximum-information intensity channel, which maximizes the change in the output intensity distribution.
Perturbations in complex media, due to their own dynamical evolution or to external effects, are often seen as detrimental. Therefore, a common strategy, especially for telecommunication and imaging applications, is to limit the sensitivity to those perturbations in order to avoid them. Here, instead, we consider enhancing the interaction between light and perturbations to produce the largest change in the output intensity distribution. Our work hinges on the use of tensor-based techniques, presently at the forefront of machine learning explorations, to study intensity-based measurements where its quadratic relationship to the field prevents the use of standard matrix methods. With this tensor-based framework, we can identify the maximum-information intensity channel which maximizes the change in its output intensity distribution and the Fisher information encoded in it about a given perturbation. We further demonstrate experimentally its superiority for robust and precise sensing applications. Additionally, we derive the appropriate strategy to reach the precision limit for intensity-based measurements, leading to an increase in Fisher information by more than four orders of magnitude compared to the mean for random wavefronts when measured with the pixels of a camera. Authors employ tensor decomposition techniques to maximise the interaction between light and perturbations in complex media as a strategy for identifying the maximum-information intensity channel, which maximizes the change in the output intensity distribution.
Abstract Perturbations in complex media, due to their own dynamical evolution or to external effects, are often seen as detrimental. Therefore, a common strategy, especially for telecommunication and imaging applications, is to limit the sensitivity to those perturbations in order to avoid them. Here, instead, we consider enhancing the interaction between light and perturbations to produce the largest change in the output intensity distribution. Our work hinges on the use of tensor-based techniques, presently at the forefront of machine learning explorations, to study intensity-based measurements where its quadratic relationship to the field prevents the use of standard matrix methods. With this tensor-based framework, we can identify the maximum-information intensity channel which maximizes the change in its output intensity distribution and the Fisher information encoded in it about a given perturbation. We further demonstrate experimentally its superiority for robust and precise sensing applications. Additionally, we derive the appropriate strategy to reach the precision limit for intensity-based measurements, leading to an increase in Fisher information by more than four orders of magnitude compared to the mean for random wavefronts when measured with the pixels of a camera.
ArticleNumber 6319
Author Gutiérrez-Cuevas, Rodrigo
de Rosny, Julien
Bouchet, Dorian
Popoff, Sébastien M.
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BackLink https://www.ncbi.nlm.nih.gov/pubmed/39060250$$D View this record in MEDLINE/PubMed
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Cites_doi 10.1364/OPTICA.404746
10.1103/PhysRevLett.106.120602
10.1103/PhysRevLett.119.033903
10.1137/S0895479896305696
10.1038/nphoton.2015.188
10.1038/ncomms2024
10.1073/pnas.1216687109
10.1103/PhysRevLett.130.260801
10.1137/S0895479898346995
10.1103/PhysRevLett.113.133902
10.1109/TIT.1971.1054719
10.1088/1367-2630/aba063
10.1364/OPTICA.403497
10.1088/2058-9565/aa77d3
10.1038/s41567-023-02163-8
10.1103/PhysRev.98.145
10.1088/2515-7647/ac76f9
10.1109/JSEN.2019.2944906
10.1038/s41567-022-01681-1
10.1364/OL.30.000135
10.1364/OE.21.006584
10.1126/science.aak9913
10.1364/OPTICA.3.001144
10.1137/07070111X
10.1364/OE.22.015599
10.1063/5.0179906
10.1364/OL.391812
10.1364/AO.39.004070
10.1364/OL.411339
10.1088/2040-8986/ac7a48
10.1002/lpor.202000120
10.1038/ncomms1078
10.1007/BF02289464
10.1038/s41467-019-09840-4
10.1103/PhysRevLett.130.083203
10.1109/50.618320
10.1109/TSP.2017.2690524
10.1126/science.1237861
10.1038/s41567-020-01137-4
10.1364/OE.20.027123
10.1103/PhysRevLett.104.100601
10.1038/nphys4036
10.1088/1367-2630/13/12/123021
10.1137/140951758
10.1109/JLT.2005.849924
10.1103/PhysRevE.67.036621
10.1038/nphoton.2015.112
10.1103/PRXQuantum.4.010308
10.1103/RevModPhys.89.015005
10.1103/PhysRevLett.124.133903
10.1103/PhysRevLett.88.203601
10.2307/1269750
10.1007/978-0-387-22526-5
10.1002/cem.1236
10.1016/S0079-6638(08)70072-6
10.1103/PhysRevX.14.031046
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References Popoff (CR7) 2011; 13
McAulay, Hofstetter (CR33) 1971; 17
Popoff (CR8) 2010; 1
Tsang, Nair, Lu (CR56) 2016; 6
Kolda, Bader (CR39) 2009; 51
CR31
CR30
Matthès (CR19) 2021; 11
Juarez (CR25) 2005; 23
Byrnes, Foreman (CR5) 2020; 22
Čižmár, Dholakia (CR9) 2012; 3
Moon (CR47) 2023; 19
Ambichl (CR18) 2017; 7
Backlund (CR48) 2012; 109
Bhattacharyya (CR32) 1946; 8
Lathauwer, Moor, Vandewalle (CR42) 2000; 21
Gigan (CR2) 2022; 4
Gupta (CR28) 2020; 14
Plöschner, Tyc, Čižmár (CR10) 2015; 9
Balzarotti (CR37) 2017; 355
Bouchet, Rotter, Mosk (CR23) 2021; 17
Shechtman (CR49) 2014; 113
CR46
Bouchet, Carminati, Mosk (CR35) 2020; 124
CR44
Masullo, Lopez, Stefani (CR38) 2022; 2
Carpenter, Eggleton, Schröder (CR16) 2015; 9
Sidiropoulos (CR40) 2017; 65
Fontaine (CR51) 2012; 20
Liang, Wadood, Vamivakas (CR58) 2021; 8
Hill, Meltz (CR24) 1997; 15
Leal-Junior (CR27) 2020; 20
Fan, Kahn (CR15) 2005; 30
Fontaine (CR53) 2019; 10
Cristiani (CR55) 2022; 24
Hüpfl (CR13) 2023; 130
Gessner, Smerzi (CR34) 2023; 130
CR14
Kolda, Mayo (CR45) 2014; 35
Rotter, Gigan (CR1) 2017; 89
Ambichl (CR17) 2017; 119
Redding, Popoff, Cao (CR26) 2013; 21
Treps (CR59) 2002; 88
Bozinovic (CR54) 2013; 340
Hsu (CR3) 2017; 13
Tucker (CR41) 1966; 31
Courme (CR12) 2023; 4
Thiel (CR60) 2017; 2
Wigner (CR21) 1955; 98
Bouchet, Seifert, Mosk (CR36) 2021; 46
Cuche, Marquet, Depeursinge (CR62) 2000; 39
CR66
CR65
CR20
CR64
Popoff (CR6) 2010; 104
CR63
Rotter, Ambichl, Libisch (CR22) 2011; 106
Gutiérrez-Cuevas (CR50) 2024; 9
Labroille (CR52) 2014; 22
Cabral (CR29) 2020; 45
Gigan (CR11) 2022; 18
Paúr (CR57) 2016; 3
Boucher (CR61) 2020; 7
Skipetrov (CR4) 2003; 67
Lathauwer, Moor, Vandewalle (CR43) 2000; 21
K Liang (50513_CR58) 2021; 8
R Gutiérrez-Cuevas (50513_CR50) 2024; 9
50513_CR14
CW Hsu (50513_CR3) 2017; 13
S Gigan (50513_CR11) 2022; 18
P Boucher (50513_CR61) 2020; 7
S Fan (50513_CR15) 2005; 30
B Redding (50513_CR26) 2013; 21
N Byrnes (50513_CR5) 2020; 22
MW Matthès (50513_CR19) 2021; 11
B Courme (50513_CR12) 2023; 4
F Balzarotti (50513_CR37) 2017; 355
50513_CR66
P Ambichl (50513_CR17) 2017; 119
50513_CR20
50513_CR64
J Hüpfl (50513_CR13) 2023; 130
D Bouchet (50513_CR35) 2020; 124
50513_CR65
D Bouchet (50513_CR36) 2021; 46
LR Tucker (50513_CR41) 1966; 31
RK Gupta (50513_CR28) 2020; 14
50513_CR63
J Juarez (50513_CR25) 2005; 23
LA Masullo (50513_CR38) 2022; 2
MP Backlund (50513_CR48) 2012; 109
G Labroille (50513_CR52) 2014; 22
K Hill (50513_CR24) 1997; 15
TG Kolda (50513_CR39) 2009; 51
V Thiel (50513_CR60) 2017; 2
I Cristiani (50513_CR55) 2022; 24
M Paúr (50513_CR57) 2016; 3
E Cuche (50513_CR62) 2000; 39
S Rotter (50513_CR22) 2011; 106
50513_CR31
TD Cabral (50513_CR29) 2020; 45
R McAulay (50513_CR33) 1971; 17
Y Shechtman (50513_CR49) 2014; 113
S Gigan (50513_CR2) 2022; 4
D Bouchet (50513_CR23) 2021; 17
S Popoff (50513_CR8) 2010; 1
SE Skipetrov (50513_CR4) 2003; 67
M Plöschner (50513_CR10) 2015; 9
EP Wigner (50513_CR21) 1955; 98
50513_CR30
LD Lathauwer (50513_CR43) 2000; 21
SM Popoff (50513_CR7) 2011; 13
S Rotter (50513_CR1) 2017; 89
TG Kolda (50513_CR45) 2014; 35
N Treps (50513_CR59) 2002; 88
T Čižmár (50513_CR9) 2012; 3
50513_CR44
NK Fontaine (50513_CR51) 2012; 20
A Bhattacharyya (50513_CR32) 1946; 8
50513_CR46
AG Leal-Junior (50513_CR27) 2020; 20
SM Popoff (50513_CR6) 2010; 104
ND Sidiropoulos (50513_CR40) 2017; 65
LD Lathauwer (50513_CR42) 2000; 21
J Carpenter (50513_CR16) 2015; 9
M Gessner (50513_CR34) 2023; 130
N Bozinovic (50513_CR54) 2013; 340
J Moon (50513_CR47) 2023; 19
P Ambichl (50513_CR18) 2017; 7
NK Fontaine (50513_CR53) 2019; 10
M Tsang (50513_CR56) 2016; 6
References_xml – volume: 7
  start-page: 1621
  year: 2020
  ident: CR61
  article-title: Spatial optical mode demultiplexing as a practical tool for optimal transverse distance estimation
  publication-title: Optica
  doi: 10.1364/OPTICA.404746
  contributor:
    fullname: Boucher
– volume: 106
  start-page: 120 602
  year: 2011
  ident: CR22
  article-title: Generating particlelike scattering states in wave transport
  publication-title: Phys. Rev. Lett.
  doi: 10.1103/PhysRevLett.106.120602
  contributor:
    fullname: Libisch
– volume: 119
  start-page: 033 903
  year: 2017
  ident: CR17
  article-title: Focusing inside disordered media with the generalized Wigner-Smith operator
  publication-title: Phys. Rev. Lett.
  doi: 10.1103/PhysRevLett.119.033903
  contributor:
    fullname: Ambichl
– volume: 8
  start-page: 1
  year: 1946
  end-page: 14
  ident: CR32
  article-title: On some analogues of the amount of information and their use in statistical estimation
  publication-title: Sankhyā: Indian J. Statistics
  contributor:
    fullname: Bhattacharyya
– volume: 21
  start-page: 1253
  year: 2000
  end-page: 1278
  ident: CR43
  article-title: A multilinear singular value decomposition
  publication-title: SIAM J. Matrix Anal. Appl.
  doi: 10.1137/S0895479896305696
  contributor:
    fullname: Vandewalle
– volume: 9
  start-page: 751
  year: 2015
  end-page: 757
  ident: CR16
  article-title: Observation of eisenbud–wigner–smith states as principal modes in multimode fibre
  publication-title: Nat. Photonics
  doi: 10.1038/nphoton.2015.188
  contributor:
    fullname: Schröder
– volume: 3
  year: 2012
  ident: CR9
  article-title: Exploiting multimode waveguides for pure fibre-based imaging
  publication-title: Nat. Commun.
  doi: 10.1038/ncomms2024
  contributor:
    fullname: Dholakia
– volume: 109
  start-page: 19 087–19 092
  year: 2012
  ident: CR48
  article-title: Simultaneous, accurate measurement of the 3d position and orientation of single molecules
  publication-title: Proc. Natl Acad. Sci.
  doi: 10.1073/pnas.1216687109
  contributor:
    fullname: Backlund
– volume: 130
  start-page: 260 801
  year: 2023
  ident: CR34
  article-title: Hierarchies of frequentist bounds for quantum metrology: From Cramér-Rao to Barankin
  publication-title: Phys. Rev. Lett.
  doi: 10.1103/PhysRevLett.130.260801
  contributor:
    fullname: Smerzi
– volume: 21
  start-page: 1324
  year: 2000
  end-page: 1342
  ident: CR42
  article-title: On the best rank-1 and rank-( ,  , …,  ) approximation of higher-order tensors
  publication-title: SIAM J. Matrix Anal. Appl.
  doi: 10.1137/S0895479898346995
  contributor:
    fullname: Vandewalle
– volume: 113
  start-page: 133 902
  year: 2014
  ident: CR49
  article-title: Optimal point spread function design for 3d imaging
  publication-title: Phys. Rev. Lett.
  doi: 10.1103/PhysRevLett.113.133902
  contributor:
    fullname: Shechtman
– volume: 17
  start-page: 669
  year: 1971
  end-page: 676
  ident: CR33
  article-title: Barankin bounds on parameter estimation
  publication-title: IEEE Trans. Inf. Theory
  doi: 10.1109/TIT.1971.1054719
  contributor:
    fullname: Hofstetter
– volume: 22
  start-page: 083 023
  year: 2020
  ident: CR5
  article-title: Universal bounds for imaging in scattering media
  publication-title: New J. Phys.
  doi: 10.1088/1367-2630/aba063
  contributor:
    fullname: Foreman
– volume: 8
  start-page: 243
  year: 2021
  ident: CR58
  article-title: Coherence effects on estimating two-point separation
  publication-title: Optica
  doi: 10.1364/OPTICA.403497
  contributor:
    fullname: Vamivakas
– volume: 2
  start-page: 034 008
  year: 2017
  ident: CR60
  article-title: Quantum-limited measurements of distance fluctuations with a multimode detector
  publication-title: Quantum Sci. Technol.
  doi: 10.1088/2058-9565/aa77d3
  contributor:
    fullname: Thiel
– ident: CR46
– volume: 19
  start-page: 1709
  year: 2023
  end-page: 1718
  ident: CR47
  article-title: Measuring the scattering tensor of a disordered nonlinear medium
  publication-title: Nat. Phys.
  doi: 10.1038/s41567-023-02163-8
  contributor:
    fullname: Moon
– volume: 98
  start-page: 145
  year: 1955
  end-page: 147
  ident: CR21
  article-title: Lower limit for the energy derivative of the scattering phase shift
  publication-title: Phys. Rev.
  doi: 10.1103/PhysRev.98.145
  contributor:
    fullname: Wigner
– volume: 4
  start-page: 042 501
  year: 2022
  ident: CR2
  article-title: Roadmap on wavefront shaping and deep imaging in complex media
  publication-title: J. Phys. Photonics
  doi: 10.1088/2515-7647/ac76f9
  contributor:
    fullname: Gigan
– volume: 20
  start-page: 569
  year: 2020
  end-page: 576
  ident: CR27
  article-title: Optical fiber specklegram sensors for mechanical measurements: a review
  publication-title: IEEE Sens. J.
  doi: 10.1109/JSEN.2019.2944906
  contributor:
    fullname: Leal-Junior
– volume: 18
  start-page: 980
  year: 2022
  end-page: 985
  ident: CR11
  article-title: Imaging and computing with disorder
  publication-title: Nat. Phys.
  doi: 10.1038/s41567-022-01681-1
  contributor:
    fullname: Gigan
– volume: 2
  start-page: 100 036
  year: 2022
  ident: CR38
  article-title: A common framework for single-molecule localization using sequential structured illumination
  publication-title: Biophys. Rep.
  contributor:
    fullname: Stefani
– volume: 30
  start-page: 135
  year: 2005
  ident: CR15
  article-title: Principal modes in multimode waveguides
  publication-title: Opt. Lett.
  doi: 10.1364/OL.30.000135
  contributor:
    fullname: Kahn
– ident: CR64
– volume: 21
  start-page: 6584
  year: 2013
  ident: CR26
  article-title: All-fiber spectrometer based on speckle pattern reconstruction
  publication-title: Opt. Express
  doi: 10.1364/OE.21.006584
  contributor:
    fullname: Cao
– volume: 355
  start-page: 606
  year: 2017
  end-page: 612
  ident: CR37
  article-title: Nanometer resolution imaging and tracking of fluorescent molecules with minimal photon fluxes
  publication-title: Science
  doi: 10.1126/science.aak9913
  contributor:
    fullname: Balzarotti
– volume: 3
  start-page: 1144
  year: 2016
  ident: CR57
  article-title: Achieving the ultimate optical resolution
  publication-title: Optica
  doi: 10.1364/OPTICA.3.001144
  contributor:
    fullname: Paúr
– ident: CR66
– volume: 51
  start-page: 455
  year: 2009
  end-page: 500
  ident: CR39
  article-title: Tensor decompositions and applications
  publication-title: SIAM Rev.
  doi: 10.1137/07070111X
  contributor:
    fullname: Bader
– volume: 22
  start-page: 15 599
  year: 2014
  ident: CR52
  article-title: Efficient and mode selective spatial mode multiplexer based on multi-plane light conversion
  publication-title: Opt. Express
  doi: 10.1364/OE.22.015599
  contributor:
    fullname: Labroille
– volume: 7
  start-page: 041 053
  year: 2017
  ident: CR18
  article-title: Super- and anti-principal-modes in multimode waveguides
  publication-title: Phys. Rev. X
  contributor:
    fullname: Ambichl
– volume: 9
  start-page: 026 106
  year: 2024
  ident: CR50
  article-title: Vectorial phase retrieval in super-resolution polarization microscopy
  publication-title: APL Photonics
  doi: 10.1063/5.0179906
  contributor:
    fullname: Gutiérrez-Cuevas
– ident: CR14
– volume: 45
  start-page: 3212
  year: 2020
  ident: CR29
  article-title: Multimode exposed core fiber specklegram sensor
  publication-title: Opt. Lett.
  doi: 10.1364/OL.391812
  contributor:
    fullname: Cabral
– volume: 39
  start-page: 4070
  year: 2000
  end-page: 4075
  ident: CR62
  article-title: Spatial filtering for zero-order and twin-image elimination in digital off-axis holography
  publication-title: Appl. Opt.
  doi: 10.1364/AO.39.004070
  contributor:
    fullname: Depeursinge
– volume: 46
  start-page: 254
  year: 2021
  end-page: 257
  ident: CR36
  article-title: Optimizing illumination for precise multi-parameter estimations in coherent diffractive imaging
  publication-title: Opt. Lett.
  doi: 10.1364/OL.411339
  contributor:
    fullname: Mosk
– volume: 24
  start-page: 083 001
  year: 2022
  ident: CR55
  article-title: Roadmap on multimode photonics
  publication-title: J. Opt.
  doi: 10.1088/2040-8986/ac7a48
  contributor:
    fullname: Cristiani
– volume: 14
  start-page: 2000 120
  year: 2020
  ident: CR28
  article-title: Deep learning enabled laser speckle wavemeter with a high dynamic range
  publication-title: Laser Photonics Rev.
  doi: 10.1002/lpor.202000120
  contributor:
    fullname: Gupta
– ident: CR30
– volume: 1
  year: 2010
  ident: CR8
  article-title: Image transmission through an opaque material
  publication-title: Nat. Commun.
  doi: 10.1038/ncomms1078
  contributor:
    fullname: Popoff
– volume: 31
  start-page: 279
  year: 1966
  end-page: 311
  ident: CR41
  article-title: Some mathematical notes on three-mode factor analysis
  publication-title: Psychometrika
  doi: 10.1007/BF02289464
  contributor:
    fullname: Tucker
– volume: 10
  year: 2019
  ident: CR53
  article-title: Laguerre-gaussian mode sorter
  publication-title: Nat. Commun.
  doi: 10.1038/s41467-019-09840-4
  contributor:
    fullname: Fontaine
– volume: 130
  start-page: 083 203
  year: 2023
  ident: CR13
  article-title: Optimal cooling of multiple levitated particles through far-field wavefront shaping
  publication-title: Phys. Rev. Lett.
  doi: 10.1103/PhysRevLett.130.083203
  contributor:
    fullname: Hüpfl
– volume: 15
  start-page: 1263
  year: 1997
  end-page: 1276
  ident: CR24
  article-title: Fiber Bragg grating technology fundamentals and overview
  publication-title: J. Lightwave Technol.
  doi: 10.1109/50.618320
  contributor:
    fullname: Meltz
– volume: 65
  start-page: 3551
  year: 2017
  end-page: 3582
  ident: CR40
  article-title: Tensor decomposition for signal processing and machine learning
  publication-title: IEEE Trans. Signal Process.
  doi: 10.1109/TSP.2017.2690524
  contributor:
    fullname: Sidiropoulos
– volume: 340
  start-page: 1545
  year: 2013
  end-page: 1548
  ident: CR54
  article-title: Terabit-scale orbital angular momentum mode division multiplexing in fibers
  publication-title: Science
  doi: 10.1126/science.1237861
  contributor:
    fullname: Bozinovic
– volume: 17
  start-page: 564
  year: 2021
  end-page: 568
  ident: CR23
  article-title: Maximum information states for coherent scattering measurements
  publication-title: Nat. Phys.
  doi: 10.1038/s41567-020-01137-4
  contributor:
    fullname: Mosk
– volume: 20
  start-page: 27 123
  year: 2012
  ident: CR51
  article-title: Geometric requirements for photonic lanterns in space division multiplexing
  publication-title: Opt. Express
  doi: 10.1364/OE.20.027123
  contributor:
    fullname: Fontaine
– ident: CR63
– volume: 104
  start-page: 100 601
  year: 2010
  ident: CR6
  article-title: Measuring the transmission matrix in optics: an approach to the study and control of light propagation in disordered media
  publication-title: Phys. Rev. Lett.
  doi: 10.1103/PhysRevLett.104.100601
  contributor:
    fullname: Popoff
– volume: 13
  start-page: 497
  year: 2017
  end-page: 502
  ident: CR3
  article-title: Correlation-enhanced control of wave focusing in disordered media
  publication-title: Nat. Phys.
  doi: 10.1038/nphys4036
  contributor:
    fullname: Hsu
– volume: 13
  start-page: 123 021
  year: 2011
  ident: CR7
  article-title: Controlling light through optical disordered media: transmission matrix approach
  publication-title: New J. Phys.
  doi: 10.1088/1367-2630/13/12/123021
  contributor:
    fullname: Popoff
– volume: 6
  start-page: 031 033
  year: 2016
  ident: CR56
  article-title: Quantum theory of superresolution for two incoherent optical point sources
  publication-title: Phys. Rev. X
  contributor:
    fullname: Lu
– ident: CR44
– volume: 35
  start-page: 1563
  year: 2014
  end-page: 1581
  ident: CR45
  article-title: An adaptive shifted power method for computing generalized tensor eigenpairs
  publication-title: SIAM J. Matrix Anal. Appl.
  doi: 10.1137/140951758
  contributor:
    fullname: Mayo
– ident: CR65
– volume: 11
  start-page: 021 060
  year: 2021
  ident: CR19
  article-title: Learning and avoiding disorder in multimode fibers
  publication-title: Phys. Rev. X
  contributor:
    fullname: Matthès
– ident: CR31
– volume: 23
  start-page: 2081
  year: 2005
  end-page: 2087
  ident: CR25
  article-title: Distributed fiber-optic intrusion sensor system
  publication-title: J. Lightwave Technol.
  doi: 10.1109/JLT.2005.849924
  contributor:
    fullname: Juarez
– volume: 67
  start-page: 036 621
  year: 2003
  ident: CR4
  article-title: Information transfer through disordered media by diffuse waves
  publication-title: Phys. Rev. E
  doi: 10.1103/PhysRevE.67.036621
  contributor:
    fullname: Skipetrov
– volume: 9
  start-page: 529
  year: 2015
  end-page: 535
  ident: CR10
  article-title: Seeing through chaos in multimode fibres
  publication-title: Nat. Photonics
  doi: 10.1038/nphoton.2015.112
  contributor:
    fullname: Čižmár
– volume: 4
  start-page: 010 308
  year: 2023
  ident: CR12
  article-title: Manipulation and certification of high-dimensional entanglement through a scattering medium
  publication-title: PRX Quantum
  doi: 10.1103/PRXQuantum.4.010308
  contributor:
    fullname: Courme
– volume: 89
  start-page: 015 005
  year: 2017
  ident: CR1
  article-title: Light fields in complex media: mesoscopic scattering meets wave control
  publication-title: Rev. Mod. Phys.
  doi: 10.1103/RevModPhys.89.015005
  contributor:
    fullname: Gigan
– ident: CR20
– volume: 124
  start-page: 133 903
  year: 2020
  ident: CR35
  article-title: Influence of the local scattering environment on the localization precision of single particles
  publication-title: Phys. Rev. Lett.
  doi: 10.1103/PhysRevLett.124.133903
  contributor:
    fullname: Mosk
– volume: 88
  start-page: 203 601
  year: 2002
  ident: CR59
  article-title: Surpassing the standard quantum limit for optical imaging using nonclassical multimode light
  publication-title: Phys. Rev. Lett.
  doi: 10.1103/PhysRevLett.88.203601
  contributor:
    fullname: Treps
– volume: 130
  start-page: 083 203
  year: 2023
  ident: 50513_CR13
  publication-title: Phys. Rev. Lett.
  doi: 10.1103/PhysRevLett.130.083203
  contributor:
    fullname: J Hüpfl
– volume: 7
  start-page: 1621
  year: 2020
  ident: 50513_CR61
  publication-title: Optica
  doi: 10.1364/OPTICA.404746
  contributor:
    fullname: P Boucher
– volume: 11
  start-page: 021 060
  year: 2021
  ident: 50513_CR19
  publication-title: Phys. Rev. X
  contributor:
    fullname: MW Matthès
– volume: 355
  start-page: 606
  year: 2017
  ident: 50513_CR37
  publication-title: Science
  doi: 10.1126/science.aak9913
  contributor:
    fullname: F Balzarotti
– volume: 65
  start-page: 3551
  year: 2017
  ident: 50513_CR40
  publication-title: IEEE Trans. Signal Process.
  doi: 10.1109/TSP.2017.2690524
  contributor:
    fullname: ND Sidiropoulos
– ident: 50513_CR30
  doi: 10.2307/1269750
– volume: 3
  year: 2012
  ident: 50513_CR9
  publication-title: Nat. Commun.
  doi: 10.1038/ncomms2024
  contributor:
    fullname: T Čižmár
– volume: 22
  start-page: 15 599
  year: 2014
  ident: 50513_CR52
  publication-title: Opt. Express
  doi: 10.1364/OE.22.015599
  contributor:
    fullname: G Labroille
– ident: 50513_CR31
  doi: 10.1007/978-0-387-22526-5
– volume: 20
  start-page: 27 123
  year: 2012
  ident: 50513_CR51
  publication-title: Opt. Express
  doi: 10.1364/OE.20.027123
  contributor:
    fullname: NK Fontaine
– volume: 113
  start-page: 133 902
  year: 2014
  ident: 50513_CR49
  publication-title: Phys. Rev. Lett.
  doi: 10.1103/PhysRevLett.113.133902
  contributor:
    fullname: Y Shechtman
– volume: 8
  start-page: 1
  year: 1946
  ident: 50513_CR32
  publication-title: Sankhyā: Indian J. Statistics
  contributor:
    fullname: A Bhattacharyya
– ident: 50513_CR64
– volume: 98
  start-page: 145
  year: 1955
  ident: 50513_CR21
  publication-title: Phys. Rev.
  doi: 10.1103/PhysRev.98.145
  contributor:
    fullname: EP Wigner
– volume: 8
  start-page: 243
  year: 2021
  ident: 50513_CR58
  publication-title: Optica
  doi: 10.1364/OPTICA.403497
  contributor:
    fullname: K Liang
– volume: 22
  start-page: 083 023
  year: 2020
  ident: 50513_CR5
  publication-title: New J. Phys.
  doi: 10.1088/1367-2630/aba063
  contributor:
    fullname: N Byrnes
– volume: 7
  start-page: 041 053
  year: 2017
  ident: 50513_CR18
  publication-title: Phys. Rev. X
  contributor:
    fullname: P Ambichl
– volume: 35
  start-page: 1563
  year: 2014
  ident: 50513_CR45
  publication-title: SIAM J. Matrix Anal. Appl.
  doi: 10.1137/140951758
  contributor:
    fullname: TG Kolda
– volume: 9
  start-page: 751
  year: 2015
  ident: 50513_CR16
  publication-title: Nat. Photonics
  doi: 10.1038/nphoton.2015.188
  contributor:
    fullname: J Carpenter
– volume: 106
  start-page: 120 602
  year: 2011
  ident: 50513_CR22
  publication-title: Phys. Rev. Lett.
  doi: 10.1103/PhysRevLett.106.120602
  contributor:
    fullname: S Rotter
– volume: 3
  start-page: 1144
  year: 2016
  ident: 50513_CR57
  publication-title: Optica
  doi: 10.1364/OPTICA.3.001144
  contributor:
    fullname: M Paúr
– volume: 19
  start-page: 1709
  year: 2023
  ident: 50513_CR47
  publication-title: Nat. Phys.
  doi: 10.1038/s41567-023-02163-8
  contributor:
    fullname: J Moon
– volume: 6
  start-page: 031 033
  year: 2016
  ident: 50513_CR56
  publication-title: Phys. Rev. X
  contributor:
    fullname: M Tsang
– ident: 50513_CR44
  doi: 10.1002/cem.1236
– volume: 46
  start-page: 254
  year: 2021
  ident: 50513_CR36
  publication-title: Opt. Lett.
  doi: 10.1364/OL.411339
  contributor:
    fullname: D Bouchet
– volume: 39
  start-page: 4070
  year: 2000
  ident: 50513_CR62
  publication-title: Appl. Opt.
  doi: 10.1364/AO.39.004070
  contributor:
    fullname: E Cuche
– ident: 50513_CR65
– volume: 17
  start-page: 564
  year: 2021
  ident: 50513_CR23
  publication-title: Nat. Phys.
  doi: 10.1038/s41567-020-01137-4
  contributor:
    fullname: D Bouchet
– volume: 2
  start-page: 034 008
  year: 2017
  ident: 50513_CR60
  publication-title: Quantum Sci. Technol.
  doi: 10.1088/2058-9565/aa77d3
  contributor:
    fullname: V Thiel
– volume: 31
  start-page: 279
  year: 1966
  ident: 50513_CR41
  publication-title: Psychometrika
  doi: 10.1007/BF02289464
  contributor:
    fullname: LR Tucker
– volume: 51
  start-page: 455
  year: 2009
  ident: 50513_CR39
  publication-title: SIAM Rev.
  doi: 10.1137/07070111X
  contributor:
    fullname: TG Kolda
– volume: 89
  start-page: 015 005
  year: 2017
  ident: 50513_CR1
  publication-title: Rev. Mod. Phys.
  doi: 10.1103/RevModPhys.89.015005
  contributor:
    fullname: S Rotter
– volume: 1
  year: 2010
  ident: 50513_CR8
  publication-title: Nat. Commun.
  doi: 10.1038/ncomms1078
  contributor:
    fullname: S Popoff
– volume: 124
  start-page: 133 903
  year: 2020
  ident: 50513_CR35
  publication-title: Phys. Rev. Lett.
  doi: 10.1103/PhysRevLett.124.133903
  contributor:
    fullname: D Bouchet
– volume: 30
  start-page: 135
  year: 2005
  ident: 50513_CR15
  publication-title: Opt. Lett.
  doi: 10.1364/OL.30.000135
  contributor:
    fullname: S Fan
– volume: 130
  start-page: 260 801
  year: 2023
  ident: 50513_CR34
  publication-title: Phys. Rev. Lett.
  doi: 10.1103/PhysRevLett.130.260801
  contributor:
    fullname: M Gessner
– volume: 15
  start-page: 1263
  year: 1997
  ident: 50513_CR24
  publication-title: J. Lightwave Technol.
  doi: 10.1109/50.618320
  contributor:
    fullname: K Hill
– volume: 14
  start-page: 2000 120
  year: 2020
  ident: 50513_CR28
  publication-title: Laser Photonics Rev.
  doi: 10.1002/lpor.202000120
  contributor:
    fullname: RK Gupta
– volume: 88
  start-page: 203 601
  year: 2002
  ident: 50513_CR59
  publication-title: Phys. Rev. Lett.
  doi: 10.1103/PhysRevLett.88.203601
  contributor:
    fullname: N Treps
– volume: 13
  start-page: 123 021
  year: 2011
  ident: 50513_CR7
  publication-title: New J. Phys.
  doi: 10.1088/1367-2630/13/12/123021
  contributor:
    fullname: SM Popoff
– volume: 2
  start-page: 100 036
  year: 2022
  ident: 50513_CR38
  publication-title: Biophys. Rep.
  contributor:
    fullname: LA Masullo
– volume: 21
  start-page: 1324
  year: 2000
  ident: 50513_CR42
  publication-title: SIAM J. Matrix Anal. Appl.
  doi: 10.1137/S0895479898346995
  contributor:
    fullname: LD Lathauwer
– ident: 50513_CR63
  doi: 10.1016/S0079-6638(08)70072-6
– volume: 45
  start-page: 3212
  year: 2020
  ident: 50513_CR29
  publication-title: Opt. Lett.
  doi: 10.1364/OL.391812
  contributor:
    fullname: TD Cabral
– volume: 9
  start-page: 529
  year: 2015
  ident: 50513_CR10
  publication-title: Nat. Photonics
  doi: 10.1038/nphoton.2015.112
  contributor:
    fullname: M Plöschner
– volume: 17
  start-page: 669
  year: 1971
  ident: 50513_CR33
  publication-title: IEEE Trans. Inf. Theory
  doi: 10.1109/TIT.1971.1054719
  contributor:
    fullname: R McAulay
– volume: 18
  start-page: 980
  year: 2022
  ident: 50513_CR11
  publication-title: Nat. Phys.
  doi: 10.1038/s41567-022-01681-1
  contributor:
    fullname: S Gigan
– volume: 4
  start-page: 010 308
  year: 2023
  ident: 50513_CR12
  publication-title: PRX Quantum
  doi: 10.1103/PRXQuantum.4.010308
  contributor:
    fullname: B Courme
– ident: 50513_CR14
– volume: 67
  start-page: 036 621
  year: 2003
  ident: 50513_CR4
  publication-title: Phys. Rev. E
  doi: 10.1103/PhysRevE.67.036621
  contributor:
    fullname: SE Skipetrov
– volume: 104
  start-page: 100 601
  year: 2010
  ident: 50513_CR6
  publication-title: Phys. Rev. Lett.
  doi: 10.1103/PhysRevLett.104.100601
  contributor:
    fullname: SM Popoff
– volume: 21
  start-page: 6584
  year: 2013
  ident: 50513_CR26
  publication-title: Opt. Express
  doi: 10.1364/OE.21.006584
  contributor:
    fullname: B Redding
– ident: 50513_CR66
– volume: 109
  start-page: 19 087–19 092
  year: 2012
  ident: 50513_CR48
  publication-title: Proc. Natl Acad. Sci.
  doi: 10.1073/pnas.1216687109
  contributor:
    fullname: MP Backlund
– volume: 119
  start-page: 033 903
  year: 2017
  ident: 50513_CR17
  publication-title: Phys. Rev. Lett.
  doi: 10.1103/PhysRevLett.119.033903
  contributor:
    fullname: P Ambichl
– volume: 9
  start-page: 026 106
  year: 2024
  ident: 50513_CR50
  publication-title: APL Photonics
  doi: 10.1063/5.0179906
  contributor:
    fullname: R Gutiérrez-Cuevas
– volume: 13
  start-page: 497
  year: 2017
  ident: 50513_CR3
  publication-title: Nat. Phys.
  doi: 10.1038/nphys4036
  contributor:
    fullname: CW Hsu
– volume: 24
  start-page: 083 001
  year: 2022
  ident: 50513_CR55
  publication-title: J. Opt.
  doi: 10.1088/2040-8986/ac7a48
  contributor:
    fullname: I Cristiani
– volume: 10
  year: 2019
  ident: 50513_CR53
  publication-title: Nat. Commun.
  doi: 10.1038/s41467-019-09840-4
  contributor:
    fullname: NK Fontaine
– volume: 21
  start-page: 1253
  year: 2000
  ident: 50513_CR43
  publication-title: SIAM J. Matrix Anal. Appl.
  doi: 10.1137/S0895479896305696
  contributor:
    fullname: LD Lathauwer
– ident: 50513_CR46
– volume: 340
  start-page: 1545
  year: 2013
  ident: 50513_CR54
  publication-title: Science
  doi: 10.1126/science.1237861
  contributor:
    fullname: N Bozinovic
– volume: 23
  start-page: 2081
  year: 2005
  ident: 50513_CR25
  publication-title: J. Lightwave Technol.
  doi: 10.1109/JLT.2005.849924
  contributor:
    fullname: J Juarez
– volume: 4
  start-page: 042 501
  year: 2022
  ident: 50513_CR2
  publication-title: J. Phys. Photonics
  doi: 10.1088/2515-7647/ac76f9
  contributor:
    fullname: S Gigan
– volume: 20
  start-page: 569
  year: 2020
  ident: 50513_CR27
  publication-title: IEEE Sens. J.
  doi: 10.1109/JSEN.2019.2944906
  contributor:
    fullname: AG Leal-Junior
– ident: 50513_CR20
  doi: 10.1103/PhysRevX.14.031046
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Snippet Perturbations in complex media, due to their own dynamical evolution or to external effects, are often seen as detrimental. Therefore, a common strategy,...
Abstract Perturbations in complex media, due to their own dynamical evolution or to external effects, are often seen as detrimental. Therefore, a common...
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639/624/1075/1083
639/624/1075/187
639/624/1107/510
Complex media
Electron microscopes
Fisher information
Humanities and Social Sciences
Light
Luminous intensity
Machine learning
Matrix methods
multidisciplinary
Perturbation
Science
Science (multidisciplinary)
Sensitivity enhancement
Tensors
Wave fronts
Title Reaching the precision limit with tensor-based wavefront shaping
URI https://link.springer.com/article/10.1038/s41467-024-50513-8
https://www.ncbi.nlm.nih.gov/pubmed/39060250
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Volume 15
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