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Nonequilibrium Fluctuation Relations in a Quantum Coherent Conductor

机译:量子相干导体中的非平衡涨落关系

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We experimentally demonstrate the validity of nonequilibrium fluctuation relations by using a quantum coherent conductor. In equilibrium the fluctuation-dissipation relation leads to the correlation between current and current noise at the conductor, namely, the Johnson-Nyquist relation. When the conductor is voltage biased so that the nonlinear regime is entered, the fluctuation theorem has predicted similar nonequilibrium fluctuation relations, which hold true even when the Onsager-Casmir relations are broken in magnetic fields. Our experiments qualitatively validate the predictions as the first evidence of this theorem in the nonequilibrium quantum regime.
机译:我们通过使用量子相干导体实验证明了非平衡涨落关系的有效性。在平衡状态下,波动-耗散关系导致导体上电流与电流噪声之间的相关性,即约翰逊-奈奎斯特关系。当导体受到电压偏置从而进入非线性状态时,波动定理已预测出相似的非平衡波动关系,即使在磁场中Onsager-Casmir关系破裂的情况下也是如此。我们的实验定性地验证了这些预测,作为该定理在非平衡量子态中的第一个证据。

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