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首页> 外文期刊>Physical review.B.Condensed matter and materials physics >Asymmetric arms maximize visibility in hot-electron interferometers
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Asymmetric arms maximize visibility in hot-electron interferometers

机译:不对称臂最大化热电干涉仪的可见性

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We consider theoretically an electronic Mach-Zehnder interferometer constructed from quantum Hall edge channels and quantum point contacts, fed with single electrons from a dynamic quantum dot source. By considering the energy dependence of the edge-channel guide centers, we give an account of the phase averaging in this setup that is particularly relevant for the short, high-energy wave packets injected by this type of electron source. We present both analytic and numerical results for the energy-dependent arrival time distributions of the electrons and also give an analysis of the delay times associated with the quantum point contacts and their effects on the interference patterns. A key finding is that, contrary to expectation, maximum visibility requires the interferometer arms to be different in length, with an offset of up to a micron for typical parameters. By designing interferometers that incorporate this asymmetry in their geometry, phase-averaging effects can be overcome such that visibility is only limited by other incoherent mechanisms.
机译:理论上我们考虑了由量子霍尔边缘通道和量子点触点构造的电子Mach-Zehnder干涉仪,从动态量子点源供给单个电子。通过考虑边缘通道引导中心的能量依赖性,我们在该设置中介绍了该设置中的相位平均,这对于通过这种类型的电子源注入的短,高能量波包特别相关。我们向电子的能量依赖到达时间分布呈现分析和数值结果,并且还提供了与量子点触点相关联的延迟时间及其对干涉图案的影响的分析。一个关键的发现是,与期望相反,最大可见性需要干涉仪臂的长度不同,偏移到典型参数的微米。通过设计在其几何形状中包含这种不对称的干涉仪,可以克服相平均效果,使得可见性仅受到其他非相干机制的限制。

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  • 来源
    《Physical review.B.Condensed matter and materials physics 》 |2021年第3期| 035436.1-035436.11| 共11页
  • 作者单位

    Joint Quantum Centre Durham-Newcastle School of Mathematics Statistics and Physics Newcastle University Newcastle upon Tyne NE1 7RU United Kingdom;

    Institute for Cross-Disciplinary Physics and Complex Systems IFISC (UIB-CSIC) E-07122 Palma de Mallorca Spain;

    Joint Quantum Centre Durham-Newcastle School of Mathematics Statistics and Physics Newcastle University Newcastle upon Tyne NE1 7RU United Kingdom Centre for Quantum Optical Technologies Centre of New Technologies University of Warsaw Banacha 2c 02-097 Warsaw Poland;

    Department of Physics Korea Advanced Institute of Science and Technology Daejeon 34141 Republic of Korea;

    National Physical Laboratory Hampton Road Teddington Middlesex TW11 0LW United Kingdom;

    Joint Quantum Centre Durham-Newcastle School of Mathematics Statistics and Physics Newcastle University Newcastle upon Tyne NE1 7RU United Kingdom;

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