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Resonant regeneration in the sub-quantum regime – A demonstration of fractional quantum interference

机译:亚量子态中的共振再生-分数量子干涉的演示

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Light shining through wall experiments (in the optical as well as in the microwave regime) are a powerful tool to search for light particles coupled very weakly to photons such as axions or extra hidden sector photons. Resonant regeneration, where a resonant cavity is employed to enhance the regeneration rate of photons, is one of the most promising techniques to improve the sensitivity of the next generation of experiments. However, doubts have been voiced if such methods work at very low regeneration rates where on average the cavity contains less than one photon. In this Letter we report on a demonstration experiment using a microwave cavity driven with extremely low power, to show that resonant amplification works also in this regime. In accordance with standard quantum mechanics this is a demonstration that interference also works at the level of less than one quantum. As an additional benefit this experiment shows that thermal photons inside the cavity cause no adverse effects.
机译:通过壁实验发出的光(无论是在光学还是在微波状态下)都是一种功能强大的工具,可用于搜索与轴子或额外的隐藏扇区光子等光子耦合非常弱的光粒子。共振再生是采用最有希望的技术来提高下一代实验的灵敏度,其中共振腔用于提高光子的再生速率。但是,人们怀疑这种方法是否能以非常低的再生速率工作,而平均而言,空腔中的光子少于一个。在这封信中,我们报告了使用微波腔以极低功率驱动的演示实验,以表明谐振放大在这种情况下也起作用。根据标准量子力学,这证明了干涉也可以在小于一个量子的水平上起作用。作为另一个好处,该实验表明,腔体内的热光子不会引起不利影响。

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