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首页> 外文期刊>Physical review >Electron-spin Dephasing Via Hyperfine Interaction In A Quantum Dot: An Equation-of-motion Calculation Of Electron-spin Correlation Functions
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Electron-spin Dephasing Via Hyperfine Interaction In A Quantum Dot: An Equation-of-motion Calculation Of Electron-spin Correlation Functions

机译:通过量子点中的超精细相互作用进行电子自旋移相:电子自旋相关函数的运动方程计算

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In this paper we develop an equation-of-motion (EOM) approach to study the non-Markovian single-electron-spin dynamics due to its inhomogeneous hyperfine coupling to the surrounding nuclei in a quantum dot. In particular, we identify an electron-spin correlation function that fully represents the electron-spin quantum coherence. Using the EOM method, we recover the exact solution of electron-spin decoherence for the case of a fully polarized nuclear reservoir. By considering nuclear-spin flip-flops mediated by virtual electron flips, which generate fluctuations in the Overhauser field (the nuclear field) for the electron spin, we find that the free-induction decay of the electron-spin correlation function for partially polarized and unpolar-ized nuclear-spin configurations is of the order unity instead of O(1/N) (N being the number of nuclei in the dot) obtained in previous studies. We show that the complete amplitude decay corresponds to the spectral broadening of the correlation function near the electron-spin Rabi frequency induced by nuclear-spin flip-flops. Our results show that a 90% nuclear-spin polarization can enhance the electron-spin coherence time by more than 1 order of magnitude. In the long-time limit, the envelope of the transverse electron-spin correlation function has a nonexponential 1/t~2 decay in the presence of both polarized and unpolarized nuclei.
机译:在本文中,我们开发了运动方程(EOM)方法来研究非马尔可夫单电子自旋动力学,这是由于其与量子点中周围原子核的不均匀超精细耦合所致。特别是,我们确定了一个电子自旋相关函数,该函数完全代表了电子自旋的量子相干性。使用EOM方法,我们获得了完全极化核储层情况下电子自旋退相干的精确解。通过考虑由虚拟电子触发器介导的核自旋触发器,该触发器在电子自旋的Overhauser场(核场)中产生波动,我们发现电子自旋相关函数的自由感应衰减对于部分极化和非极化核自旋结构的阶次为统一,而不是先前研究中获得的O(1 / N)(N为点中的核数)。我们表明,完整的振幅衰减对应于核自旋触发器引起的电子自旋Rabi频率附近的相关函数的频谱展宽。我们的结果表明,90%的核自旋极化可以将电子自旋相干时间提高1个数量级以上。在长期范围内,在存在极化和非极化核的情况下,横向电子自旋相关函数的包络线具有非指数的1 / t〜2衰减。

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