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Radiative corrections in laser-dressed atoms: formalism and applications

机译:激光修饰原子的辐射校正:形式主义和应用

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The dressing of atomic states in a strong laser field modifies the structure of the incoherently scattered fraction of the laser intensity, which is described to a good approximation by the Mollow spectrum. The incoherent spectrum is generated by the fluctuations of the atomic dipole moment about its expectation value, and the positions of the peaks are approximately given by the energy differences between the dressed atomic energy levels. In this paper, we investigate radiative corrections received by the dressed states. Our calculations are motivated by the quest to understand in detail the interplay of a bound electron dressed by the highly populated laser mode and its interaction with the vacuum modes. Alternatively, this may be seen as an electron experiencing modified stimulated and spontaneous radiative corrections in a vacuum tailored by the laser field. We obtain dressed self-energy shifts that depend on the Rabi flopping frequency (and in turn on the laser intensity) and on the detuning of the laser field relative to the atomic resonance frequency. We find that the dressed radiative corrections differ in a nontrivial manner from the radiative shifts of the 'bare' atomic states. (C) 2003 Elsevier Science (USA). All rights reserved. [References: 72]
机译:强激光场中原子态的修整会改变激光强度非相干散射部分的结构,该结构可以通过Mollow光谱很好地描述。非相干光谱是由原子偶极矩围绕其期望值的波动产生的,并且峰的位置大约由修整后的原子能级之间的能量差给出。在本文中,我们研究了穿衣国家所接受的辐射校正。我们的计算是出于寻求详细了解由高密度激光模式修饰的束缚电子及其与真空模式相互作用的动力。替代地,这可以看作是电子在由激光场定制的真空中经历了改进的受激和自发辐射校正。我们获得了整齐的自能量移动,该移动取决于Rabi的跳变频率(进而取决于激光强度)以及相对于原子共振频率的激光场失谐。我们发现,修整后的辐射校正与“裸”原子态的辐射位移以不平凡的方式不同。 (C)2003 Elsevier Science(美国)。版权所有。 [参考:72]

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