124 / 2021-04-10 13:02:53
Quantum tunneling and Floquet enerrgy in the Non-Hermitian Bose-Hubbard model
double-well,semi-classical,non-hermitain,Floquet energy
Final Paper
Ye Haisheng / ChangSha university of science and technology;School of Physics and Electronic Science
A time-dependent imaginary-part(non-hermitian) is added into the time-dependent double-well model to study the correspondence between the semi-classical behavior and the quantum behavior through mean field theory. The influence of the time-dependent imaginary-part on the quantum tunneling of the system is discussed, the effect of tunneling in chaotic regions is greater than that of the regular one,and the classical chaos also will cause the enhancement of the quantum tunneling.By the way,the Floquet energy spectrum of the system is calculated,the imaginary part of  Floquet energy is 0 when the frequency of non-Hermitian term satisfies relation that it’s times larger to the hermitian-part frequency.
Important Date
  • Conference Date

    Jul 10

    2021

    to

    Jul 12

    2021

  • May 10 2021

    Draft paper submission deadline

  • Jul 06 2021

    Registration deadline

Sponsored By
Changsha University of Science & Technology
Supported By
IEEE Electron Devices Society
IEEE
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