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Pseudorandom binary injection of levitons for electron quantum optics

机译:轻子的伪随机二元注入用于电子量子光学

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摘要

The recent realization of single-electron sources lets us envision performing electron quantum optics experiments, where electrons can be viewed as flying qubits propagating in a ballistic conductor. To date, all electron sources operate in a periodic electron injection mode, leading to energy spectrum singularities in various physical observables which sometimes hide the bare nature of physical effects. To go beyond this, we propose a spread-spectrum approach where electron flying qubits are injected in a nonperiodic manner following a pseudorandom binary bit pattern. Extending the Floquet scattering theory approach from periodic to spread-spectrum drive, the shot noise of pseudorandom binary sequences of single-electron injection can be calculated for leviton and nonleviton sources. Our new approach allows us to disentangle the physics of the manipulated excitations from that of the injection protocol. In particular, the spread-spectrum approach is shown to provide better knowledge of electronic Hong-Ou-Mandel correlations and to clarify the nature of the pulse train coherence and the role of the dynamical orthogonality catastrophe for noninteger charge injection.
机译:单电子源的最新实现使我们可以设想进行电子量子光学实验,其中电子可以看作是在弹道导体中传播的飞行量子比特。迄今为止,所有电子源都以周期性电子注入模式工作,导致各种物理可观察物的能谱奇异性有时掩盖了物理效应的裸露性质。为了超越这一点,我们提出了一种扩展频谱方法,其中以伪随机二进制位模式以非周期性方式注入电子飞行量子比特。将Floquet散射理论方法从周期驱动扩展到扩频驱动,可以为列弗顿和非列夫顿源计算单电子注入的伪随机二进制序列的散粒噪声。我们的新方法使我们能够将操纵激发的物理原理与注入方案的物理原理区分开。尤其是,显示了扩展频谱方法,可以更好地了解电子Hong-Ou-Mandel相关性,并阐明脉冲序列相干性的本质以及动态正交性灾难对于非整数电荷注入的作用。

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  • 来源
    《Physical review 》 |2018年第12期| 125407.1-125407.10| 共10页
  • 作者

    D. C. Glattli; P. Roulleau;

  • 作者单位

    Service de Physique de l'Etat Condense (CNRS UMR 3680), IRAMIS, CEA-Saclay, F-91191 Gif-Sur-Yvette, France;

    Service de Physique de l'Etat Condense (CNRS UMR 3680), IRAMIS, CEA-Saclay, F-91191 Gif-Sur-Yvette, France;

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