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Effects of vacuum fluctuation suppression on atomic decay rates

机译:真空波动抑制对原子衰变率的影响

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The use of atomic decay rates as a probe of sub-vacuum phenomena will be studied. Because electromagnetic vacuum fluctuations are essential for radiative decay of excited atomic states, decay rates can serve as a measure of the suppression of vacuum fluctuations in non-classical states, such as squeezed vacua. In such states, the renormalized expectation value of the square of the electric field or the energy density can be periodically negative, representing suppression of vacuum fluctuations. We explore the extent to which atomic decays can be used to measure the mean squared electric field or energy density. We consider a scheme in which atoms in an excited state transit a closed cavity whose lowest mode contains photons in a non-classical state. A crucial feature of our analysis is that we do not employ the rotating wave approximation. The change in the decay probability of the atom in the cavity due to the non-classical state can, under certain circumstances, serve as a measure of the mean squared electric field or energy density in the cavity. We make some estimates of the magnitude of this effect, which indicate that an experimental test might be possible, although very challenging.
机译:将研究使用原子衰变率作为次真空现象的探针。因为电磁真空涨落对于激发原子态的辐射衰减必不可少,所以衰减率可以作为抑制非经典状态(如压缩真空)中的真空涨落的度量。在这种状态下,电场或能量密度的平方的重新归一化的期望值可以周期性地为负,表示抑制了真空波动。我们探索原子衰变可用于测量均方电场或能量密度的程度。我们考虑一种方案,其中处于激发态的原子穿过一个封闭的腔,该腔的最低模式包含非经典状态的光子。我们分析的一个关键特征是我们不采用旋转波近似法。在某些情况下,由于腔体中原子的非经典状态而导致的衰变概率的变化可以用作腔体中电场强度或能量平方的度量。我们对这种影响的程度进行了一些估计,这表明尽管很有挑战性,但仍可能进行实验测试。

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