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  • Dynamical Exciton Condensates in Biased Electron-Hole Bilayers
    Bilayer materials may support interlayer excitons comprised of electrons in one layer and holes in the other In experiments, a nonzero exciton density is typically sustained by a bias chemical potential, implemented either by optical pumping or by electrical contacts connected to the two layers
  • Dynamical exciton condensates in biased electron-hole bilayers
    We show that if charge can tunnel between the layers, the chemical potential bias means that an exciton condensate is in the dynamical regime of ac Josephson effect
  • Dynamical Exciton Condensates in Biased Electron-Hole Bilayers
    Bilayer materials may support interlayer excitons comprised of electrons in one layer and holes in the other In experiments, a nonzero exciton density is typically sustained by a bias chemical potential, implemented either by optical pumping or by electrical contacts connected to the two layers
  • Dynamical exciton condensates in biased electron-hole bilayers
    If the system is placed in an optical cavity, coupling with cavity photons favors different dynamical states depending on the bias, realizing superradiant phases An exciton is a boson formed when an electron in a conduction band of an insulator becomes bound to a hole in its valence band
  • Dynamical exciton condensates in biased electron-hole bilayers
    Bilayer materials may support interlayer excitons comprised of electrons in one layer and holes in the other In experiments, a non-zero exciton density is typically sustained by a bias chemical potential, implemented either by optical pumping or by electrical contacts connected to the two layers
  • Dynamical exciton condensates in biased electron-hole bilayers
    If the system is placed in an optical cavity, coupling with cavity photons favors different dynamical states depending on the bias, realizing superradiant phases An exciton is a boson formed when an electron in a conduction band of an insulator becomes bound to a hole in its valence band
  • Dynamical exciton condensates in biased electron-hole bilayers
    We show that if charge can tunnel between the layers, the chemical potential bias means that an exciton condensate is in the dynamical regime of ac Josephson effect
  • Sun, Zhiyuan, Murakami, Yuta, Xuan, Fengyuan, Kaneko, Tatsuya, Golež . . .
    Sun, Zhiyuan, Murakami, Yuta, Xuan, Fengyuan, Kaneko, Tatsuya, Golež, Denis, Millis, Andrew J (2024) Dynamical Exciton Condensates in Biased Electron-Hole Bilayers Physical Review Letters, 133 (21) doi:10 1103 physrevlett 133 217002
  • Suns Group | Publications
    Optical conductivity of the two-dimensional Hubbard model: Vertex corrections, emergent Galilean invariance, and the accuracy of the single-site dynamical mean field approximation
  • Publication - Osaka U
    Z Sun, Y Murakami, F Xuan, T Kaneko, D Golež, and A J Millis : Dynamical Exciton Condensates in Biased Electron-Hole Bilayers, Phys Rev Lett 133 (2024) 217002 (1-9)





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