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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Effects of field fluctuations on driven autoionizing resonances
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Effects of field fluctuations on driven autoionizing resonances

机译:场波动对驱动自动化共振的影响

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摘要

The excitation of a resonance embedded in a continuum by intense radiation requires a theoretical description beyond the transition probability per unit time. This implies a time-dependent formulation incorporating all features of the radiation source, such as pulse temporal shape and duration, as well as stochastic properties, for pulses other than Fourier limited. The radiation from short wavelength free electron lasers is a case in point, as it is the only source that can provide the necessary intensity. In view of ongoing experiments with such sources, we present a systematic study for an isolated autoionizing resonance. We find that intensity, pulse duration and field fluctuations conspire in producing unexpected excitation profiles, not amenable to a description in terms of the usual Fano profile. In particular, the role of intensity fluctuations turns out to pose challenging theoretical problems part of which have been addressed herein.
机译:通过强烈的辐射嵌入连续体中的共振的激发需要在每单位时间的过渡概率之外的理论描述。 这意味着一种时间依赖的制剂,其包括辐射源的所有特征,例如脉冲时间形状和持续时间以及傅里叶地区以外的脉冲的随机性能。 来自短波长电子激光器的辐射是点的,因为它是唯一可以提供必要强度的源。 鉴于具有此类来源的持续实验,我们为孤立的自动化共振提供了系统的系统研究。 我们发现强度,脉冲持续时间和场波动在产生意想不到的激励配置文件中,而不是在通常的Fano配置文件方面的描述。 特别是,强度波动的作用证明,在此解决的部分已经解决了挑战的理论问题。

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