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The collective Lamb shift in nuclear γ-ray superradiance

机译:核γ射线超长的集体羔羊转移

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The electromagnetic transitions of Moessbauer 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 Moessbauer nuclei, an important condition for observation of the collective Lamb shift.
机译:Moessbauer Nuclei的电磁过渡提供了几乎理想的两级系统,将量子光学概念转移到硬X射线的状态下。如果许多相同的原子统称地与谐振辐射场相互作用,则一个观察到(量子)光学性质,其与单个原子相对不同。最突出的效果是扩大称为集体增强的共振线,由原子合奏内的真实光子的多次散射产生。另一方面,集合体内的虚拟光子的交换导致共振线的微小能量偏移,集体羔羊转移,在其预测之后长时间经过实验难以捉摸。在这里,我们说明了高度辉煌的同步辐射允许人们可以制定激发的Moessbauer核的超辐射状态,这是观察集体羔羊转移的重要条件。

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