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首页> 外文期刊>Physical review, B >Exact master equation and non-Markovian decoherence dynamics of Majorana zero modes under gate-induced charge fluctuations
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Exact master equation and non-Markovian decoherence dynamics of Majorana zero modes under gate-induced charge fluctuations

机译:栅极诱导电荷波动下Majorana零模式的精确主方程和非马克可夫脱机动态

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摘要

In this paper, we use the exact master equation approach to investigate the decoherence dynamics of Majorana zero modes in the Kitaev model, a 1D p-wave spinless topological superconducting chain (TSC) that is disturbed by gate-induced charge fluctuations. The exact master equation is derived by extending Feynman-Vernon influence functional technique to fermionic open systems involving pairing excitations. We obtain the exact master equation for the zero-energy Bogoliubov quasiparticle (bogoliubon) in the TSC, and then transfer it into the master equation for the Majorana zero modes. Within this exact master equation formalism, we can describe in detail the non-Markovian decoherence dynamics of the zero-energy bogoliubon as well as Majorana zero modes under local perturbations. We find that at zero temperature, local charge fluctuations induce level broadening to one of the Majorana zero modes but there is an isolated peak (localized bound state) located at zero energy that partially protects the Majorana zero mode from decoherence. At finite temperatures, the zero-energy localized bound state does not precisely exist, but the coherence of the Majorana zero mode can still be partially but weakly protected, due to the sharp dip of the spectral density near the zero frequency. The decoherence will be enhanced as one increases the charge fluctuations and/or the temperature of the gate.
机译:在本文中,我们使用精确的主级方程方法来研究Kitaev模型中Majorana零模式的漂移动态,由栅极感应电荷波动受到干扰的1D P波无源拓扑超导链(TSC)。通过扩展Feynman-Vernon对涉及配对激励的Fermionic Open Systems来源的精确主方程来源。我们在TSC中获得零能量Bogoliubov Quasiparticle(Bogoliubon)的精确主方程,然后将其转移到Majorana零模式的主方程中。在这种精确的主方程式中,我们可以详细描述零能量Bogoliubon的非马洛维人的移植动态以及局部扰动下的Majorana Zero模式。我们发现,在零温度下,局部电荷波动诱导较大的巨型零模式之一,但是存在位于零能量的隔离峰(局部界限),部分地保护Majorana Zero模式免受研弹保护。在有限温度下,零能量局部绑定状态不正度存在,但由于ZER频率附近的光谱密度的尖锐倾斜,Majorana零模式的相干性仍然可以部分而弱保护。随着一个人增加电荷波动和/或门的温度,将增强干燥器。

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