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Photonic superdiffusive motion in resonance radiation trapping

机译:共振辐射俘获中的光子超扩散运动

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In this work we consider the relation between the jump length probability density function and the line shape function in resonance radiation trapping in atomic vapors. The two-sided jump length probability density function suitable for a unidimensional formulation of radiative transfer is also derived. As a side result, a procedure to obtain the Maxwell distribution of velocities from the Maxwell-Boltzmann distribution of speeds was obtained. General relations that give the asymptotic jump length behavior and the Levy flight parameter mu for any line shape are obtained. The results are applied to generalized Doppler, generalized Lorentz, and Voigt line shape functions. It is concluded that the lighter the tail of the line shape function, the less heavy the tail of the jump length probability density function, although this tail is always heavy, with mu <= 1. (c) 2006 American Institute of Physics.
机译:在这项工作中,我们考虑了原子蒸气中共振辐射俘获的跃迁长度概率密度函数与线形函数之间的关系。还推导了适用于辐射传递的一维公式的两侧跳跃长度概率密度函数。作为附带结果,获得了一种从速度的麦克斯韦-波尔兹曼分布获得速度的麦克斯韦分布的过程。获得了给出任何线形的渐近跳跃长度行为和Levy飞行参数mu的一般关系。将结果应用于广义多普勒,广义洛伦兹和Voigt线形函数。结论是,线形函数的尾部越轻,则跳跃长度概率密度函数的尾部越轻,尽管该尾部总是很重,且mu <=1。(c)2006年美国物理研究所。

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