Search Results - "Rigneault, H."

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  1. 1

    Hollow Core Double-Clad Fiber Coupler for Nonlinear Micro-Endoscopy by Septier, D., Labat, D., Pastre, A., Bernard, R., Brevalle-Wasilewski, G., Rigneault, H., Bouwmans, G., Kudlinski, A.

    Published in Journal of lightwave technology (15-07-2023)
    “…We report the design, fabrication and characterization of the first hollow core double-clad fiber coupler for nonlinear micro-endoscopy. It is made of a pure…”
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  2. 2

    Label-free highly multimodal nonlinear endoscope by Septier, D, Mytskaniuk, V, Habert, R, Labat, D, Baudelle, K, Cassez, A, Brévalle-Wasilewski, G, Conforti, M, Bouwmans, G, Rigneault, H, Kudlinski, A

    Published in Optics express (04-07-2022)
    “…We demonstrate a 2 mm diameter highly multimodal nonlinear micro-endoscope allowing label-free imaging of biological tissues. The endoscope performs…”
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  3. 3

    Double clad tubular anti-resonant hollow core fiber for nonlinear microendoscopy by Kudlinski, A, Cassez, A, Vanvincq, O, Septier, D, Pastre, A, Habert, R, Baudelle, K, Douay, M, Mytskaniuk, V, Tsvirkun, V, Rigneault, H, Bouwmans, G

    Published in Optics express (11-05-2020)
    “…We report the fabrication and characterization of the first double clad tubular anti-resonant hollow core fiber. It allows to deliver ultrashort pulses without…”
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  4. 4

    Fluorescence Correlation Spectroscopy Diffusion Laws to Probe the Submicron Cell Membrane Organization by Wawrezinieck, Laure, Rigneault, Hervé, Marguet, Didier, Lenne, Pierre-François

    Published in Biophysical journal (01-12-2005)
    “…To probe the complexity of the cell membrane organization and dynamics, it is important to obtain simple physical observables from experiments on live cells…”
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  5. 5

    Noise in stimulated Raman scattering measurement: From basics to practice by Audier, X., Heuke, S., Volz, P., Rimke, I., Rigneault, H.

    Published in APL photonics (01-01-2020)
    “…We revisit laser intensity noise in the context of stimulated Raman scattering (SRS), which has recently proved to be a key technique to provide label free…”
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  6. 6

    In vivo single human sweat gland activity monitoring using coherent anti-Stokes Raman scattering and two-photon excited autofluorescence microscopy by Chen, X., Gasecka, P., Formanek, F., Galey, J.-B., Rigneault, H.

    Published in British journal of dermatology (1951) (01-04-2016)
    “…Summary Background Eccrine sweat secretion is of central importance for control of body temperature. Although the incidence of sweat gland dysfunction might…”
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  7. 7

    Enhancement of single-molecule fluorescence detection in subwavelength apertures by Rigneault, Hervé, Capoulade, Jérémie, Dintinger, José, Wenger, Jérôme, Bonod, Nicolas, Popov, Evgeni, Ebbesen, Thomas W, Lenne, Pierre-François

    Published in Physical review letters (09-09-2005)
    “…We report the experimental proof of molecular count rate enhancement (up to 6.5-fold) and lifetime reduction for single fluorescent molecules diffusing in…”
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  8. 8

    Image-based adaptive optics for in vivo imaging in the hippocampus by Champelovier, D., Teixeira, J., Conan, J.-M., Balla, N., Mugnier, L. M., Tressard, T., Reichinnek, S., Meimon, S., Cossart, R., Rigneault, H., Monneret, S., Malvache, A.

    Published in Scientific reports (21-02-2017)
    “…Adaptive optics is a promising technique for the improvement of microscopy in tissues. A large palette of indirect and direct wavefront sensing methods has…”
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  9. 9

    Coherent anti-Stokes Raman scattering (CARS) microscopy imaging at interfaces: evidence of interference effects by Gachet, D, Billard, F, Sandeau, N, Rigneault, H

    Published in Optics express (06-08-2007)
    “…We show in this paper that the contrast of the interface between resonant and nonresonant media imaged in Coherent anti-Stokes Raman scattering (CARS)…”
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  10. 10

    Polarization resolved stimulated raman scattering: probing depolarization ratios of liquids by Munhoz, F., Brustlein, S., Hostein, R., Berto, P., Brasselet, S., Rigneault, H.

    Published in Journal of Raman spectroscopy (01-03-2012)
    “…Polarization resolved stimulated Raman scattering (SRS) signal is described in the case of isotropic media and linearly polarized incident fields. The model…”
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  11. 11

    Raman depolarization ratio of liquids probed by linear polarization coherent anti-Stokes Raman spectroscopy by Munhoz, F., Brustlein, S., Gachet, D., Billard, F., Brasselet, S., Rigneault, H.

    Published in Journal of Raman spectroscopy (01-07-2009)
    “…We present a simple analytical model to describe the linear polarization coherent anti‐Stokes Raman scattering (CARS) spectroscopy. In this scheme, the pump…”
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  12. 12

    Subwavelength patterns and high detection efficiency in fluorescence correlation spectroscopy using photonic structures by Lenne, P.-F., Etienne, E., Rigneault, H.

    Published in Applied physics letters (03-06-2002)
    “…We present theoretical and experimental evidence of subwavelength resolution and high detection efficiency in fluorescence correlation spectroscopy (FCS) using…”
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  13. 13

    Single-fluorophore diffusion in a lipid membrane over a subwavelength aperture by Wenger, Jérôme, Rigneault, Hervé, Dintinger, José, Marguet, Didier, Lenne, Pierre-François

    Published in Journal of biological physics (01-01-2006)
    “…We use submicrometer apertures milled in an aluminium film to study the diffusion dynamics of beta-Bodipy-FL-C(5)-HPC (Bodipy-PC) fluorophores in a lipid…”
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  14. 14

    Observation of the interferences between the emitted beams in a 4Pi microscope by partial coherence interferometry by Sandeau, N., Giovannini, H., Lenne, P.-F., Rigneault, H.

    Published in Applied physics letters (31-10-2005)
    “…We propose a modified 4Pi microscope setup for observing solely the interference resulting from the superposition of the beams emitted by fluorescent species…”
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  15. 15

    Spontaneous emission properties of color centers based optical microcavities by Belarouci, A., Menchini, F., Rigneault, H., Jacquier, B., Montereali, R.M., Somma, F., Moretti, P.

    Published in Optics communications (15-03-2001)
    “…Optical microcavities based on lithium fluoride films treated by low-energy electrons to create visible-emitting F 2 color centers have been fabricated, and…”
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  16. 16

    Engineering of optical active microcavities based on color centers in LiF by ion implantation by Saoudi, R., Belarouci, A., Moretti, P., Jacquier, B., Rigneault, H., Cathelinaud, M., Nichelatti, E., Montereali, R.M., Somma, F.

    Published in Optical materials (01-07-2006)
    “…For the first time active planar optical microcavities with a thin colored lithium fluoride film as spacer have been fabricated by ion implantation…”
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  17. 17

    Fluorescence imaging of submicrometric lattices of colour centres in LiF by an apertureless scanning near-field optical microscope by Adam, P M, Benrezzak, S, Bijeon, J, Royer, P, Guy, S, Jacquier, B, Moretti, P, Montereali, R M, Piccinini, M, Menchini, F, Somma, F, Seassal, C, Rigneault, H

    Published in Optics express (24-09-2001)
    “…We report fluorescence imaging of colour centres in Lithium Fluoride (LiF) using an apertureless Scanning Near Field Optical Microscope (SNOM). The sample…”
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  18. 18
  19. 19

    Design and fabrication of optical microcavities based on F 2 colour centres in lithium fluoride films by Bonfigli, F., Cathelinaud, M., Jacquier, B., Montereali, R.M., Moretti, P., Nichelatti, E., Piccinini, M., Rigneault, H., Somma, F.

    Published in Optics communications (01-04-2004)
    “…The current search for novel materials with active optical properties has demonstrated the relevance of the emission characteristics of laser active colour…”
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  20. 20

    In-Plane Plasmonic Antenna Arrays with Surface Nanogaps for Giant Fluorescence Enhancement by Flauraud, Valentin, Regmi, Raju, Winkler, Pamina M, Alexander, Duncan T. L, Rigneault, Hervé, van Hulst, Niek F, García-Parajo, María F, Wenger, Jérôme, Brugger, Jürgen

    Published in Nano letters (08-03-2017)
    “…Optical nanoantennas have a great potential for enhancing light-matter interactions at the nanometer scale, yet fabrication accuracy and lack of scalability…”
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