【2h】

Dynamical Casimir effect in a Josephson metamaterial

机译:约瑟夫森超材料中的动态卡西米尔效应

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摘要

The zero-point energy stored in the modes of an electromagnetic cavity has experimentally detectable effects, giving rise to an attractive interaction between the opposite walls, the static Casimir effect. A dynamical version of this effect was predicted to occur when the vacuum energy is changed either by moving the walls of the cavity or by changing the index of refraction, resulting in the conversion of vacuum fluctuations into real photons. Here, we demonstrate the dynamical Casimir effect using a Josephson metamaterial embedded in a microwave cavity at 5.4 GHz. We modulate the effective length of the cavity by flux-biasing the metamaterial based on superconducting quantum interference devices (SQUIDs), which results in variation of a few percentage points in the speed of light. We extract the full 4 × 4 covariance matrix of the emitted microwave radiation, demonstrating that photons at frequencies symmetrical with respect to half of the modulation frequency are generated in pairs. At large detunings of the cavity from half of the modulation frequency, we find power spectra that clearly show the theoretically predicted hallmark of the Casimir effect: a bimodal, “sparrow-tail” structure. The observed substantial photon flux cannot be assigned to parametric amplification of thermal fluctuations; its creation is a direct consequence of the noncommutativity structure of quantum field theory.
机译:存储在电磁腔模式中的零点能量具有实验可检测的效果,从而在相对的壁之间产生了有吸引力的相互作用,即静态卡西米尔效应。当通过移动腔壁或通过改变折射率来改变真空能量时,会发生这种效应的动态变化,从而将真空涨落转换为真实的光子。在这里,我们使用嵌入在5.4 GHz微波腔中的Josephson超材料演示了动态卡西米尔效应。我们通过基于超导量子干涉装置(SQUID)的超材料对通量进行偏置来调制空腔的有效长度,这会导致光速变化几个百分点。我们提取发射的微波辐射的完整4×4协方差矩阵,证明成对产生相对于一半调制频率对称的频率的光子。在空腔从一半的调制频率大幅失谐的情况下,我们发现功率谱清楚地显示了卡西米尔效应的理论预测特征:双峰“麻雀尾”结构。观察到的大量光子通量不能归因于热波动的参数放大。它的产生是量子场论非交换性结构的直接结果。

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