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Hanbury Brown and Twiss Noise Correlations to Probe the Statistics of GHz Photons Emitted by Quantum Conductors

机译:Hanbury Brown和Twiss噪声相关性探讨量子导体发出的GHz光子的统计数据

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In microwave current noise power measurements, a detector is used which measures the power emitted by the device in the external circuit. This power can be viewed as a flux of (microwave) photons. An interesting question is the nature of the photon statistics associated with the noise power. While for thermal noise one expects classical photon statistics (Bose-Einstein), recently it has been shown theoretically that shot noise may lead to non-classical photon statistics. We propose an original cryogenic experimental scheme to characterize the statistics of photons emitted by conductors at GHz frequency. The experiments, a microwave analog of optical Hanbury Brown Twiss photon correlations, is able to distinguish the statistics of the black-body radiation associated with thermal electronic noise from the statistics of a coherent monochromatic microwave source. The experiments displays the sensitivity required for future investigations of non classical photons emitted by quantum conductors.
机译:在微波电流噪声功率的测量,一个检测器用于测量由所述装置在外部电路中发射的功率。这个功率可以被看作是(微波)的光子通量。一个有趣的问题是与噪声功率相关的光子统计性质。虽然热噪声人期望古典光子统计(玻色 - 爱因斯坦),最近它在理论上已经证明,散粒噪声可能会导致非经典的光子统计。我们提出了一个原始的低温实验方案表征在GHz频段由导体发射的光子的统计信息。的实验中,光学汉伯里布朗特威斯光子相关性的微波类似物,是能够区分与来自相干单色微波源的统计热电子噪声相关联的黑体辐射的统计信息。实验显示所需的由量子导体发射非经典的光子的将来的调查的灵敏度。

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