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Sökning: WFRF:(Bhuyan Rahul 1998)

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1.
  • Bhuyan, Rahul, 1998, et al. (författare)
  • The Effect of the Relative Size of the Exciton Reservoir on Polariton Photophysics
  • 2024
  • Ingår i: Advanced Optical Materials. - 2195-1071. ; 12:2
  • Tidskriftsartikel (refereegranskat)abstract
    • Strong interactions between excitons and photons lead to the formation of exciton-polaritons, which possess different properties compared to their constituents. Polaritons are created by incorporating a dye in an optical cavity where the electromagnetic field is tightly confined. The interest in the subject has exploded in recent years due to the ability to change (photo)chemistry, but still as simple a variable as the yield of emission varies between studies. For the field to progress, linking observables to system parameters is a dire need. Here, the study pairs emission yield to the size of the so-called exciton reservoir, which dictates polariton relaxation dynamics. To do this, a method is devised to experimentally control the relative size of the exciton reservoir and link it to the yield of emission. Thus, the results enable comparison of the photophysics of previous studies within the field and provide the tools to study the effect of the exciton reservoir on polariton photochemistry. Polaritons are created by incorporating a dye in an optical cavity. Here, the study pairs the emission yield to the size of the so-called exciton reservoir, which dictates polariton relaxation dynamics. To do this, a method is devised to experimentally control the relative size of the exciton reservoir and link it to the yield of emission.image
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2.
  • Bhuyan, Rahul, 1998, et al. (författare)
  • The Rise and Current Status of Polaritonic Photochemistry and Photophysics
  • 2023
  • Ingår i: Chemical Reviews. - 0009-2665 .- 1520-6890. ; 123:18, s. 10877-10919
  • Forskningsöversikt (refereegranskat)abstract
    • The interaction between molecular electronic transitions and electromagnetic fields can be enlarged to the point where distinct hybrid light-matter states, polaritons, emerge. The photonic contribution to these states results in increased complexity as well as an opening to modify the photophysics and photochemistry beyond what normally can be seen in organic molecules. It is today evident that polaritons offer opportunities for molecular photochemistry and photophysics, which has caused an ever-rising interest in the field. Focusing on the experimental landmarks, this review takes its reader from the advent of the field of polaritonic chemistry, over the split into polariton chemistry and photochemistry, to present day status within polaritonic photochemistry and photophysics. To introduce the field, the review starts with a general description of light-matter interactions, how to enhance these, and what characterizes the coupling strength. Then the photochemistry and photophysics of strongly coupled systems using Fabry-Perot and plasmonic cavities are described. This is followed by a description of room-temperature Bose-Einstein condensation/polariton lasing in polaritonic systems. The review ends with a discussion on the benefits, limitations, and future developments of strong exciton-photon coupling using organic molecules.
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