具有多种模式的电子-鹭鸶系统弛豫过程中的能量流:非平衡格林函数研究

Ken Inayoshi, A. Koga, Y. Murakami
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引用次数: 0

摘要

我们研究了描述与热声子和热浴声子耦合的电子系统的扩展霍尔斯坦模型中的能量流。为了分析电子光激发后的弛豫过程,我们采用了非平衡动态平均场理论(DMFT)。我们发现了弛豫过程中的逆向能量流,即电子和热声子之间的能量转移方向是相反的。为了阐明反向能量流的微观机制,我们引入了近似能量流,这些能量流是用梯度和准粒子近似计算的,并与非平衡分布函数相关。我们将这些近似能量流与非平衡 DMFT 计算出的全能量流进行比较。我们发现,在弱电子-热-声子耦合机制下,全能量流和近似能量流几乎相同,这意味着可以用非平衡态分布函数来正确理解弛豫动力学。随着电子-热-声子耦合强度的增加,近似能量流不能定性地再现完全能量流。这表明能量流的微观起源不能完全用非平衡态分布函数来解释。通过比较不同近似程度的能量流,我们揭示了梯度近似和准粒子近似的作用。
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Energy Flow during Relaxation in an Electron–Phonon System with Multiple Modes: A Nonequilibrium Green’s Function Study
We investigate an energy flow in an extended Holstein model describing electron systems coupled to hot-phonons and heat-bath phonons. To analyze the relaxation process after the photo-excitation of electrons, we employ the nonequilibrium dynamical mean-field theory (DMFT). We find the backward energy flow during the relaxation, where the direction of energy transfer between electrons and hot-phonons is reversed. To clarify the microscopic mechanism of the backward energy flow, we introduce the approximated energy flows, which are calculated with the gradient and quasiparticle approximations and are related to the nonequilibrium distribution functions. We compare these approximated energy flows with the full energy flows calculated from the nonequilibrium DMFT. We find that, in the weak electron-hot-phonon coupling regime, the full and approximated energy flows are almost the same, meaning that the relaxation dynamics can be correctly understood in terms of the nonequilibrium distribution functions. As the strength of the electron-hot-phonon coupling increases, the approximated energy flow fails to qualitatively reproduce the full energy flow. This indicates that the microscopic origin of the energy flow cannot be solely explained by the nonequilibrium distribution functions. By comparing the energy flows with different levels of approximation, we reveal the role of the gradient and quasiparticle approximations.
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