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Internal dynamics of intense twin beams and their coherence

机译:强烈双光束的内部动力学及其相干性

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摘要

The dynamics of intense twin beams in pump-depleted parametric down-conversion is studied. A generalized parametric approximation is suggested to solve the quantum model. Its comparison with a semiclassical model valid for larger twin-beam intensities confirms its applicability. The experimentally observed maxima in the spectral and spatial intensity auto- and cross- correlation functions depending on pump power are explained in terms of different speeds of the (back-) flow of energy between the individual down-converted modes and the corresponding pump modes. This effect is also responsible for the gradual replacement of the initial exponential growth of the down-converted fields by the linear one. Furthermore, it forms a minimum in the curve giving the effective number of twin-beam modes. These effects manifest a tight relation between the twin-beam coherence and its internal structure, as clearly visible in the model. Multiple maxima in the intensity correlation functions originating in the oscillations of energy flow between the pump and down-converted modes are theoretically predicted.
机译:研究了泵浦耗尽型参数下转换中强双光束的动力学。建议使用广义参数逼近来求解量子模型。与适用于较大双光束强度的半经典模型的比较证实了其​​适用性。根据各个下变频模式与相应的泵模式之间能量(反向)流动的不同速度,说明了根据泵浦功率在光谱和空间强度自相关函数和互相关函数中实验观察到的最大值。这种效应还导致线性场逐渐取代了下转换场的初始指数增长。此外,它在曲线中形成最小值,从而给出了有效数量的双光束模式。这些效应表明在模型中清楚可见的双光束相干性与其内部结构之间的紧密关系。理论上预测了强度相关函数中的多个最大值,该强度相关函数源于泵和下变频模式之间的能量流振荡。

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