Polaritonics I: Exciton-Polaritons and Transport

FOCUS · MAR-A67 · ID: 3088169







Presentations

  • 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.

    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.

    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.

    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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  • 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.
    (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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  • 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of stimulated scattering in the picosecond formation dynamics of a Bose-Einstein condensate of molecular polaritons [Unpublished manuscript].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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  • ORAL

    Publication: 1. Xu, Delor et al. "Ultrafast Imaging of Polariton Propagation and Interactions", Nature Communications, 2023, 14, 3881
    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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  • 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)

    Multimode Organic Polariton Lasing. K. B. Arnardottir, A. J. Moilanen, A. Strashko, P. Törmä, and J. Keeling. Phys. Rev. Lett. 125 233603 (2020)

    Few-emitter lasing in single ultra-small nanocavities. O. S. Ojambati, K. B. Arnardóttir, B. W. Lovett, J. Keeling, and J. J. Baumberg
    Nanophotonics (2024) (DOI: 10.1515/nanoph-2023-0706)

    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)

    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

    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)

    Efficient many-body non-Markovian dynamics of organic polaritons. P. Fowler-Wright, B. W. Lovett, J. Keeling. Phys. Rev. Lett. 129 173001 (2022)

    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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  • 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 →