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Experimental test of the entanglement of radiation generated by the dynamical Casimir effect

机译:动态卡西米尔效应产生的辐射纠缠的实验测试

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In the dynamical Casimir effect (DCE), a boundary condition for the electromagnetic field is changed rapidly, resulting in generation of pairs of photons [1]. This was experimentally demonstrated in 2011 [2]. Both generation of photons and two-mode squeezing were observed. Quantum theory predicts that the photon pairs are entangled and that the resulting electromagnetic field is in a nonclassical state at zero temperature. Johansson et al. [3] recently suggested how to test entanglement of the DCE radiation by evaluating the log negativity. Here we present such an experimental test. We have measured a sample consisting of an open transmission line terminated by a superconducting quantum interference device (SQUID). The electrical length of the transmission line can be modulated, by changing the magnetic flux through the SQUID loop. Broadband radiation of photon pairs is observed along with strong two mode squeezing. The system is characterized at a temperature of 收起
机译:在动态卡西米尔效应(DCE)中,电磁场的边界条件迅速变化,从而导致产生成对的光子[1]。 2011年通过实验证明了这一点[2]。观察到光子的产生和双模压缩。量子理论预测,光子对将发生纠缠,并且所产生的电磁场将在零温度下处于非经典状态。 Johansson等。 [3]最近提出了如何通过评估对数负性来测试DCE辐射的纠缠。在这里,我们提出这样的实验测试。我们已经测量了一个样本,该样本包含一个由超导量子干扰设备(SQUID)终止的开放传输线。通过改变通过SQUID回路的磁通量,可以调制传输线的电气长度。观察到光子对的宽带辐射以及强烈的两种模态压缩。该系统的特点是在收起温度下

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