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单电子双量子点相干电荷振荡中的朗道-齐纳-施图克尔贝格干涉

Landau-Zener-Stückelberg interference in coherent charge oscillations of a one-electron double quantum dot.

作者信息

Ota Takeshi, Hitachi Kenichi, Muraki Koji

机构信息

NTT Basic Research Laboratories, NTT Corporation, 3-1 Morinosato-Wakamiya, Atsugi, 243-0198, Japan.

出版信息

Sci Rep. 2018 Apr 3;8(1):5491. doi: 10.1038/s41598-018-23468-2.

Abstract

Landau-Zener (LZ) transition has received renewed interest as an alternative approach to control single-qubit states. An LZ transition occurs when a system passes through an avoided crossing that arises from quantum mechanical coupling of two levels, taking the system to a coherent superposition of the two states. Then, multiple LZ transitions induce interference known as Landau-Zener-Stückelberg (LZS) interference whose amplitude strongly depends on the velocity or adiabaticity of the passage. Here, we study the roles of LZ transitions and LZS interference in coherent charge oscillations of a one-electron semiconductor double quantum dot by time-domain experiments using standard rectangular voltage pulses. By employing density matrix simulations, we show that, in the standard setup using rectangular pulses, even a small distortion of the pulse can give rise to LZ transitions and hence LZS interference, which significantly enhances the measured oscillation amplitude. We further show experimentally that the nature of the coherent charge oscillations changes from Rabi-type to LZS oscillations with increasing pulse distortion. Our results thus demonstrate that it is essential to take into account LZS interference for both precise control of charge qubits and correct interpretation of measurement results.

摘要

作为控制单量子比特状态的一种替代方法,朗道 - 齐纳(LZ)跃迁重新引起了人们的关注。当一个系统通过由两个能级的量子力学耦合产生的避免交叉点时,就会发生LZ跃迁,从而使系统进入这两个状态的相干叠加态。然后,多个LZ跃迁会引发被称为朗道 - 齐纳 - 施图克尔贝格(LZS)干涉的现象,其振幅强烈依赖于跃迁的速度或绝热性。在这里,我们通过使用标准矩形电压脉冲的时域实验,研究LZ跃迁和LZS干涉在单电子半导体双量子点的相干电荷振荡中的作用。通过进行密度矩阵模拟,我们表明,在使用矩形脉冲的标准设置中,即使脉冲有很小的失真也会引发LZ跃迁,进而产生LZS干涉,这会显著增强测量到的振荡幅度。我们还通过实验表明,随着脉冲失真的增加,相干电荷振荡的性质从拉比型振荡转变为LZS振荡。因此,我们的结果表明,对于电荷量子比特的精确控制和测量结果的正确解释,考虑LZS干涉都是至关重要的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b8e/5882656/eaa8e7879237/41598_2018_23468_Fig1_HTML.jpg

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