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Hanbury-Brown Twiss noise correlation with time controlled quasi-particles in ballistic quantum conductors (Reprinted from)

机译:弹道量子导体中Hanbury-Brown Twiss噪声与时间受控准粒子的相关性(转载自)

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摘要

We study the Hanbury Brown and Twiss correlation of electronic quasi-particles injected in a quantum conductor using current noise correlations and we experimentally address the effect of finite temperature. By controlling the relative time of injection of two streams of electrons it is possible to probe the fermionic antibunching, performing the electron analog of the optical Hong Ou Mandel (HOM) experiment. The electrons are injected using voltage pulses with either sine-wave or Lorentzian shape. In the latter case, we propose a set of orthogonal wavefunctions, describing periodic trains of multiply charged electron pulses, which give a simple interpretation to the HOM shot noise. The effect of temperature is then discussed and experimentally investigated. We observe a perfect electron anti-bunching for a large range of temperature, showing that, as recently predicted, thermal mixing of the states does not affect anti-bunching properties, a feature qualitatively different from dephasing. For single charge Lorentzian pulses, we provide experimental evidence of the prediction that the HOM shot noise variation versus the emission time delay is remarkably independent of the temperature. (C) 2016 Published by Elsevier B.V.
机译:我们使用电流噪声相关性研究了注入量子导体中的电子准粒子的Hanbury Brown和Twiss相关性,并通过实验解决了有限温度的影响。通过控制两个电子流的相对注入时间,可以探测费米离子反聚束,进行光学香Hong曼德尔(HOM)实验的电子类似物。使用具有正弦波或洛伦兹形状的电压脉冲注入电子。在后一种情况下,我们提出了一组正交波函数,描述了带多个电荷的电子脉冲的周期性序列,从而对HOM散粒噪声进行了简单的解释。然后讨论了温度的影响并进行了实验研究。我们在很大的温度范围内观察到了完美的电子反聚束,表明,正如最近预测的那样,状态的热混合不会影响反聚束性能,这在性质上与去相不同。对于单电荷洛伦兹脉冲,我们提供了预测的实验证据,即HOM散粒噪声变化与发射时间延迟之间的关系明显与温度无关。 (C)2016由Elsevier B.V.发布

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