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Polaritonics I: Exciton-Polaritons and Transport

FOCUS · MAR-A67 · ID: 3088169







Presentations

  • Radiative decay of incoherent excitons in the collective strong coupling regime

    ORAL

    Publication: J. B. Pérez-Sánchez, A. Koner, N. P. Stern, J. Yuen-Zhou. Simulating molecular polaritons in the collective regime using few-molecule models. Proc. Nat. Acad. Sci. 120 (15), e2219223120, 2023.<br><br>J. B. Pérez-Sánchez, J. Yuen-Zhou. Radiative pumping vs vibrational relaxation of molecular polaritons: A bosonic mapping approach. arXiv preprint arXiv:2407.20594, 2024.<br><br>K. Schwennicke, A. Koner, J. B. Pérez-Sánchez, W. Xiong, N. C. Giebink, M. L. Weichman, J. Yuen-Zhou. When do molecular polaritons behave like optical filters? arXiv preprint arXiv:2408.05036, 2024.<br><br>J. B. Pérez-Sánchez, A. Koner, S. Raghavan-Chitra, J. Yuen-Zhou. CUT-E as a 1/N expansion for multiscale molecular polariton dynamics. arXiv preprint arXiv:2410.14175, 2024.

    Presenters

    • Juan B Perez-Sanchez

      University of California, San Diego

    Authors

    • Juan B Perez-Sanchez

      University of California, San Diego

    • Joel Yuen-Zhou

      University of California, San Diego, UC San Diego

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  • Cavity-Mediated Enhancement of the Energy Transfer in the Reduced Fenna–Matthews–Olson Complex

    ORAL

    Publication: Herrera Rodríguez, Luis E., Aarti Sindhu, Kennet J. Rueda Espinosa, and Alexei A. Kananenka. Journal of Chemical Theory and Computation 20, no. 17 (2024): 7393-7403.<br>(https://pubs.acs.org/doi/full/10.1021/acs.jctc.4c00626)

    Presenters

    • Aarti Sindhu

      University of Delaware

    Authors

    • Aarti Sindhu

      University of Delaware

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  • The role of stimulated scattering in the picosecond formation dynamics of a Bose-Einstein condensate of molecular polaritons

    ORAL

    Publication: Kumar, E. J., et. al. (2024). The role of stimulated scattering in the picosecond formation dynamics of a Bose-Einstein condensate of molecular polaritons [Unpublished manuscript]. Department of Physics & Center for Functional Materials, Wake Forest University.

    Presenters

    • Evan J Kumar

      Wake Forest University

    Authors

    • Evan J Kumar

      Wake Forest University

    • Katherine A Koch

      Wake Forest University

    • Victoria Quiros Cordero

      Georgia Institute of Technology, Columbia University

    • Josiah N Brinson

      Duke University

    • Ravindra Kumar Yadav

      City College of New York

    • K Burak Ucer

      Wake Forest University

    • Vinod Menon

      City College & Grad Center of CUNY, City College of New York

    • Ajay Ram Srimath Kandada

      Wake Forest University

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  • Why matter matters: importance of inter-site coupling and disorder in polariton transport

    ORAL

    Publication: 1. Xu, Delor et al. "Ultrafast Imaging of Polariton Propagation and Interactions", Nature Communications, 2023, 14, 3881<br>2. Hong, Delor et al. "Why matter matters: importance of inter-site coupling and disorder in polariton transport", In Preparation

    Presenters

    • Yongseok Hong

      Columbia University

    Authors

    • Yongseok Hong

      Columbia University

    • Ding Xu

      Columbia University

    • Milan Delor

      Columbia University, Columbia university

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  • Modelling organic polariton dynamics with strong vibronic effects.

    ORAL · Invited

    Publication: Polariton condensation with saturable molecules dressed by vibrational modes. J. A. Cwik, S. Reja, P. B. Littlewood, and J. Keeling. EPL 105 47009 (2014)<br><br>Multimode Organic Polariton Lasing. K. B. Arnardottir, A. J. Moilanen, A. Strashko, P. Törmä, and J. Keeling. Phys. Rev. Lett. 125 233603 (2020)<br><br>Few-emitter lasing in single ultra-small nanocavities. O. S. Ojambati, K. B. Arnardóttir, B. W. Lovett, J. Keeling, and J. J. Baumberg<br>Nanophotonics (2024) (DOI: 10.1515/nanoph-2023-0706)<br><br>Efficient non-Markovian quantum dynamics using time-evolving matrix product operators. A. Strathearn, P. Kirton, D. Kilda, J. Keeling, B. W. Lovett. Nature Commun. 9, 3322 (2018) <br><br>Numerically-exact simulations of arbitrary open quantum systems using automated compression of environments. M. Cygorek, M. Cosacchi, A. Vagov, V. M. Axt, B. W. Lovett, J. Keeling, E. M. Gauger<br><br>OQuPy: A Python package to efficiently simulate non-Markovian open quantum systems with process tensors. G. E. Fux, P. Fowler-Wright, J. Beckles, E. P. Butler, P. R. Eastham, D. Gribben, J. Keeling, D. Kilda, P. Kirton, E. D. C. Lawrence, B. W. Lovett, E. O'Neill, A. Strathearn, and R. de Wit. J. Chem. Phys. 161 (2024) (DOI: 10.1063/5.0225367)<br><br>Efficient many-body non-Markovian dynamics of organic polaritons. P. Fowler-Wright, B. W. Lovett, J. Keeling. Phys. Rev. Lett. 129 173001 (2022) <br><br>Non-Markovian effects in long-range polariton-mediated energy transfer. K. B. Arnardottir, P. Fowler-Wright, C. Tserkezis, B. W. Lovett, J. Keeling. http://arxiv.org/abs/2411.00503v1

    Presenters

    • Jonathan Keeling

      University of St Andrews

    Authors

    • Jonathan Keeling

      University of St Andrews

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  • Modelling organic polariton transport with saturation

    ORAL

    Presenters

    • Piper Fowler-Wright

      University of California San Diego, University of California, San Diego

    Authors

    • Piper Fowler-Wright

      University of California San Diego, University of California, San Diego

    • Michael Reitz

      University of California San Diego

    • Jonathan Keeling

      University of St Andrews

    • Brendon Lovett

      University of St Andrews

    • Joel Yuen-Zhou

      University of California, San Diego, UC San Diego

    View abstract →