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The collective Lamb shift in nuclear γ -ray superradiance

机译:核γ射线超辐射的集体兰姆位移

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摘要

The electromagnetic transitions of Mossbauer nuclei provide almost ideal two-level systems to transfer quantum optical concepts into the regime of hard x-rays. If many identical atoms collectively interact with a resonant radiation field, one observes (quantum) optical properties that are strongly different from those of a single atom. The most prominent effect is the broadening of the resonance line known as collective enhancement, resulting from multiple scattering of real photons within the atomic ensemble. On the other hand, the exchange of virtual photons within the ensemble leads to a tiny energy shift of the resonance line, the collective Lamb shift, that remained experimentally elusive for a long time after its prediction. Here we illustrate how highly brilliant synchrotron radiation allows one to prepare superradiant states of excited Mossbauer nuclei, an important condition for observation of the collective Lamb shift.
机译:Mossbauer原子核的电磁跃迁提供了几乎理想的两级系统,可将量子光学概念转换为硬X射线。如果许多相同的原子共同与共振辐射场相互作用,则人们观察到的(量子)光学特性与单个原子的光学特性完全不同。最显着的效果是共振线的加宽(称为集体增强),这是由于原子集合体中实际光子的多次散射导致的。另一方面,集合内虚拟光子的交换导致共振线的微小能量转移,即集体兰姆位移,在预测后很长一段时间内实验上难以捉摸。在这里,我们说明了高度明亮的同步加速器辐射如何允许人们准备激发的Mossbauer核的超辐射态,这是观察集体Lamb位移的重要条件。

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