Search Results - "Antosiewicz, Tomasz J"

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  1. 1

    Realizing Strong Light-Matter Interactions between Single-Nanoparticle Plasmons and Molecular Excitons at Ambient Conditions by Zengin, Gülis, Wersäll, Martin, Nilsson, Sara, Antosiewicz, Tomasz J, Käll, Mikael, Shegai, Timur

    Published in Physical review letters (15-04-2015)
    “…Realizing strong light-matter interactions between individual two-level systems and resonating cavities in atomic and solid state systems opens up…”
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  2. 2

    Observation of Tunable Charged Exciton Polaritons in Hybrid Monolayer WS2−Plasmonic Nanoantenna System by Cuadra, Jorge, Baranov, Denis G, Wersäll, Martin, Verre, Ruggero, Antosiewicz, Tomasz J, Shegai, Timur

    Published in Nano letters (14-03-2018)
    “…Formation of dressed light-matter states in optical structures, manifested as Rabi splitting of the eigen energies of a coupled system, is one of the key…”
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  3. 3

    Observation of Mode Splitting in Photoluminescence of Individual Plasmonic Nanoparticles Strongly Coupled to Molecular Excitons by Wersäll, Martin, Cuadra, Jorge, Antosiewicz, Tomasz J, Balci, Sinan, Shegai, Timur

    Published in Nano letters (11-01-2017)
    “…Plasmon–exciton interactions are important for many prominent spectroscopic applications such as surface-enhanced Raman scattering, plasmon-mediated…”
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  4. 4

    Strong plasmon-molecule coupling at the nanoscale revealed by first-principles modeling by Rossi, Tuomas P., Shegai, Timur, Erhart, Paul, Antosiewicz, Tomasz J.

    Published in Nature communications (26-07-2019)
    “…Strong light-matter interactions in both the single-emitter and collective strong coupling regimes attract significant attention due to emerging applications…”
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  5. 5

    Ultrastrong coupling between nanoparticle plasmons and cavity photons at ambient conditions by Baranov, Denis G., Munkhbat, Battulga, Zhukova, Elena, Bisht, Ankit, Canales, Adriana, Rousseaux, Benjamin, Johansson, Göran, Antosiewicz, Tomasz J., Shegai, Timur

    Published in Nature communications (01-06-2020)
    “…Ultrastrong coupling is a distinct regime of electromagnetic interaction that enables a rich variety of intriguing physical phenomena. Traditionally, this…”
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  6. 6

    Optical Constants of Several Multilayer Transition Metal Dichalcogenides Measured by Spectroscopic Ellipsometry in the 300–1700 nm Range: High Index, Anisotropy, and Hyperbolicity by Munkhbat, Battulga, Wróbel, Piotr, Antosiewicz, Tomasz J., Shegai, Timur O.

    Published in ACS photonics (20-07-2022)
    “…Transition metal dichalcogenides (TMDs) attract significant attention due to their remarkable optical and excitonic properties. It was understood already in…”
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  7. 7
  8. 8

    Role of material loss and mode volume of plasmonic nanocavities for strong plasmon-exciton interactions by Yang, Zhong-Jian, Antosiewicz, Tomasz J, Shegai, Timur

    Published in Optics express (05-09-2016)
    “…We investigate the role of material loss and mode volume of plasmonic nanostructures on strong plasmon-exciton coupling. We find that the field enhancement,…”
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  9. 9

    Suppression of photo-oxidation of organic chromophores by strong coupling to plasmonic nanoantennas by Munkhbat, Battulga, Wersäll, Martin, Baranov, Denis G, Antosiewicz, Tomasz J, Shegai, Timur

    Published in Science advances (06-07-2018)
    “…Intermixed light-matter quasi-particles-polaritons-have unique optical properties owing to their compositional nature. These intriguing hybrid states have been…”
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  10. 10

    Plasmon–Exciton Interactions in a Core–Shell Geometry: From Enhanced Absorption to Strong Coupling by Antosiewicz, Tomasz J, Apell, S. Peter, Shegai, Timur

    Published in ACS photonics (21-05-2014)
    “…We present a detailed Mie theory, finite-difference time-domain, and quasi-static study of plasmon–exciton interactions in a spherical core–shell geometry. In…”
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  11. 11

    Hot carrier generation in a strongly coupled molecule–plasmonic nanoparticle system by Kluczyk-Korch, Katarzyna, Antosiewicz, Tomasz J.

    Published in Nanophotonics (Berlin, Germany) (28-04-2023)
    “…In strongly coupled light matter systems electronic energy levels become inextricably linked to local electromagnetic field modes. Hybridization of these…”
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  12. 12

    Evaluating Conditions for Strong Coupling between Nanoparticle Plasmons and Organic Dyes Using Scattering and Absorption Spectroscopy by Zengin, Gülis, Gschneidtner, Tina, Verre, Ruggero, Shao, Lei, Antosiewicz, Tomasz J, Moth-Poulsen, Kasper, Käll, Mikael, Shegai, Timur

    Published in Journal of physical chemistry. C (22-09-2016)
    “…Interactions between surface plasmons in metal nanoparticles and electronic excitations in organic chromophores have resulted in many notable findings,…”
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  13. 13

    Ultrafast Modulation of Thermoplasmonic Nanobubbles in Water by Jones, Steven, Andrén, Daniel, Antosiewicz, Tomasz J, Käll, Mikael

    Published in Nano letters (13-11-2019)
    “…Thermo-optically generated bubbles in water provide a powerful means for active matter control in microfluidic environments. These bubbles are often formed via…”
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  14. 14

    Metasurfaces and Colloidal Suspensions Composed of 3D Chiral Si Nanoresonators by Verre, Ruggero, Shao, Lei, Odebo Länk, Nils, Karpinski, Pawel, Yankovich, Andrew B., Antosiewicz, Tomasz J., Olsson, Eva, Käll, Mikael

    Published in Advanced materials (Weinheim) (01-08-2017)
    “…High‐refractive‐index silicon nanoresonators are promising low‐loss alternatives to plasmonic particles in CMOS‐compatible nanophotonics applications. However,…”
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  15. 15

    Grain boundary mediated hydriding phase transformations in individual polycrystalline metal nanoparticles by Alekseeva, Svetlana, Fanta, Alice Bastos da Silva, Iandolo, Beniamino, Antosiewicz, Tomasz J., Nugroho, Ferry Anggoro Ardy, Wagner, Jakob B., Burrows, Andrew, Zhdanov, Vladimir P., Langhammer, Christoph

    Published in Nature communications (20-10-2017)
    “…Grain boundaries separate crystallites in solids and influence material properties, as widely documented for bulk materials. In nanomaterials, however,…”
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  16. 16

    Single Particle Nanoplasmonic Sensing in Individual Nanofluidic Channels by Fritzsche, Joachim, Albinsson, David, Fritzsche, Michael, Antosiewicz, Tomasz J, Westerlund, Fredrik, Langhammer, Christoph

    Published in Nano letters (14-12-2016)
    “…Nanoplasmonics allows label-free optical sensing and spectroscopy at the single nanoparticle level by exploiting plasmonic excitations in metal nanoparticles…”
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  17. 17

    Antibody–Antigen Interaction Dynamics Revealed by Analysis of Single-Molecule Equilibrium Fluctuations on Individual Plasmonic Nanoparticle Biosensors by Aćimović, Srdjan S, Šípová-Jungová, Hana, Emilsson, Gustav, Shao, Lei, Dahlin, Andreas B, Käll, Mikael, Antosiewicz, Tomasz J

    Published in ACS nano (23-10-2018)
    “…Antibody–antigen interactions are complex events central to immune response, in vivo and in vitro diagnostics, and development of therapeutic substances. We…”
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  18. 18

    Optical Absorption Engineering in Stacked Plasmonic Au–SiO2–Pd Nanoantennas by Wadell, Carl, Antosiewicz, Tomasz J, Langhammer, Christoph

    Published in Nano letters (12-09-2012)
    “…The nonradiative decay of a localized surface plasmon through absorption of a captured photon and excitation of an energetic electron–hole pair is a…”
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  19. 19

    Competition between surface screening and size quantization for surface plasmons in nanoparticles by Carmina Monreal, R, Antosiewicz, Tomasz J, Peter Apell, S

    Published in New journal of physics (22-08-2013)
    “…We present a theoretical model for analyzing the size dependence of the surface plasmon resonance of metallic nanospheres in a range of sizes down to a single…”
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  20. 20

    Correlative Dark-Field and Photoluminescence Spectroscopy of Individual Plasmon–Molecule Hybrid Nanostructures in a Strong Coupling Regime by Wersäll, Martin, Munkhbat, Battulga, Baranov, Denis G, Herrera, Felipe, Cao, Jianshu, Antosiewicz, Tomasz J, Shegai, Timur

    Published in ACS photonics (16-10-2019)
    “…Light–matter interactions play a crucial role in several prominent nano-optical phenomena, such as plasmon-mediated fluorescence, nanoscale lasing, and strong…”
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