论文标题

在符号流动空间中的复杂光谱分析方面,耗散动力学casimir效应

Dissipative dynamical Casimir effect in terms of the complex spectral analysis in the symplectic-Floquet space

论文作者

Tanaka, Satoshi, Kanki, Kazuki

论文摘要

理论上根据symblectic-liouvillian的复杂频谱分析,在符号频率空间中对一维光子晶体相互作用的光力机腔的动力学效应进行了研究。通过镜面边界的周期性运动对腔内模式的量子真空波动进行参数放大,并且放大的光子自发发射到光子带上。我们通过在符号 - 浮动空间中使用brillouin-wigner-feshbach投影方法,从总系统liouvillian中得出了非热有效的floquet-liouvillian。从腔体发射的光子发射过程已被能量依赖性的自我能量考虑在内。我们通过非扰动求解有效的floquet-liouvillian的非线性复杂特征值问题,从而获得了总系统的离散本本,在该非线性复合物特征值问题中,在其中特征模式由多模板bogoliubov变换表示。基于微观动力学,由于参数放大和耗散效应之间的平衡,非平衡固定的特征模被确定为具有虚拟零件值的特征模。我们发现,当空腔模式和光子带之间的混合是由间接虚拟跃迁引起的,在这种情况下导致外部场频率引起DCE时,可以通过使用有限的带宽光子波段来大大降低DCE。

Dynamical Casimir effect of the optomechanical cavity interacting with one-dimensional photonic crystal is theoretically investigated in terms of the complex spectral analysis of Floquet-Liouvillian in the symplectic-Floquet space. The quantum vacuum fluctuation of the intra-cavity mode is parametrically amplified by a periodic motion of the mirror boundary, and the amplified photons are spontaneously emitted to the photonic band. We have derived the non-Hermitian effective Floquet-Liouvillian from the total system Liouvillian with the use of the Brillouin-Wigner-Feshbach projection method in the symplectic-Floquet space. The microscopic dissipation process of the photon emission from the cavity has been taken into account by the energy-dependent self-energy. We have obtained the discrete eigenmodes of the total system by non-perturbatively solving the nonlinear complex eigenvalue problem of the effective Floquet-Liouvillian, where the eigenmodes are represented by the multimode Bogoliubov transformation. Based on the microscopic dynamics, the nonequilibrium stationary eigenmodes are identified as the eigenmodes with vanishing values of their imaginary parts due to the balance between the parametric amplification and dissipation effects. We have found that the nonlocal stationary eigenmode appears when the mixing between the cavity mode and the photonic band is caused by the indirect virtual transition, where the external field frequency to cause the DCE can be largely reduced by using the finite bandwidth photonic band.

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