We develop a microscopic toy model for cavity dynamical Casimir effect (DCE), namely, the photon generation from vacuum due to a nonstationary dielectric slab in a fixed single-mode cavity. We represent the slab by N >> 1 noninteracting two-level atoms coupled to the field via the standard dipole interaction. We show that the DCE is contained implicitly in the light-matter interaction Hamiltonian when its parameters are assumed externally prescribed functions of time. We also predict several new phenomena, such as saturation of the photon growth due to effective Kerr nonlinearity, generation of pairs of atomic excitations instead of photons ('inverse DCE') and coherent annihilation of pair of system excitations due to the atomic modulation ('anti-DCE'). These results are extended to the circuit QED architecture where similar effects can be implemented with a single qubit, providing an alternative way to generate novel cavity and atom-field entangled states.
机构:
FCEyN UBA, Dept Fis Juan Jose Giambiagi, Ciudad Univ,Pabellon 1, RA-1428 Buenos Aires, DF, ArgentinaFCEyN UBA, Dept Fis Juan Jose Giambiagi, Ciudad Univ,Pabellon 1, RA-1428 Buenos Aires, DF, Argentina
Del Grosso, Nicolas F.
Lombardo, Fernando C.
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机构:FCEyN UBA, Dept Fis Juan Jose Giambiagi, Ciudad Univ,Pabellon 1, RA-1428 Buenos Aires, DF, Argentina
Lombardo, Fernando C.
Villar, Paula, I
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机构:FCEyN UBA, Dept Fis Juan Jose Giambiagi, Ciudad Univ,Pabellon 1, RA-1428 Buenos Aires, DF, Argentina
机构:
Department of Physics,ARSD College,University of Delhi (South Campus)
School of Physical Sciences,Jawaharlal Nehru UniversityDepartment of Physics and Astrophysics,University of Delhi
Aranya B Bhattacherjee
ManMohan
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Department of Physics and Astrophysics,University of DelhiDepartment of Physics and Astrophysics,University of Delhi