论文标题
用于建模和评估量子传输测量的量子多光谱:一种统一的方法,用于强和弱测量方案
Quantum polyspectra for modeling and evaluating quantum transport measurements: A unifying approach to the strong and weak measurement regime
论文作者
论文摘要
引入了最多四个阶的量子多光谱,用于建模和评估量子传输测量值,为传统的完整计数统计方法提供了强大的替代方法。单个量子点的占用动力学的实验时间跟踪通过同时拟合其第二,3和4阶光谱来评估。该方案恢复了相同的电子隧道和自旋松弛率,与以前从相同数据的分析中,根据全计数统计和等待时间分布的分析获得了相同的分析。此外,即使无法从与完整计数统计量有关的时间跟踪和方法中识别出量子跳跃,对量子多光谱的时间跟踪的评估也是可行的,即使无法从时间跟踪和方法中识别出量子跳跃,也是可行的。对双点系统的数值研究表明,量子多光谱中的特征发生了强烈变化的特征,以从弱测量机制过渡到Zeno-Egrimime,在该ZENO-ERGIME被抑制了相干隧道动力学。因此,量子多光谱构成了一种对量子测量的强和弱状态的一般统一方法,其中可能在不同领域的应用,例如纳米电子,电路量子电动力学,自旋噪声光谱或量子光学。
Quantum polyspectra of up to fourth order are introduced for modeling and evaluating quantum transport measurements offering a powerful alternative to methods of the traditional full counting statistics. Experimental time-traces of the occupation dynamics of a single quantum dot are evaluated via simultaneously fitting their 2nd-, 3rd-, and 4th-order spectra. The scheme recovers the same electron tunneling and spin relaxation rates as previously obtained from an analysis of the same data in terms of factorial cumulants of the full counting statistics and waiting-time distributions. Moreover, the evaluation of time-traces via quantum polyspectra is demonstrated to be feasible also in the weak measurement regime even when quantum jumps can no longer be identified from time-traces and methods related to the full counting statistics cease to be applicable. A numerical study of a double dot system shows strongly changing features in the quantum polyspectra for the transition from the weak measurement regime to the Zeno-regime where coherent tunneling dynamics is suppressed. Quantum polyspectra thus constitute a general unifying approach to the strong and weak regime of quantum measurements with possible applications in diverse fields as nano-electronics, circuit quantum electrodynamics, spin noise spectroscopy, or quantum optics.