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Master and Langevin equations for electromagnetic dissipation and decoherence of density matrices

机译:密度矩阵的电磁耗散和退相干的Master和Langevin方程

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摘要

We set up a forward-backward path integral for a point particle in a bath of photons to derive a master equation for the density matrix which describes electromagnetic dissipation and decoherence. We also derive the associated Langevin equation. As an application, we recalculate the Wigner-Weisskopf formula for the natural line width of an atomic state at zero temperature and find, in addition, the temperature broadening caused by the decoherence term. Our master equation also yields the correct Lamb shift of atomic levels. The two equations may have applications to dilute interstellar gases or to few-particle systems in cavities.
机译:我们为光子浴中的点粒子设置了向前-向后的路径积分,以导出密度矩阵的主方程,该方程描述了电磁耗散和退相干。我们还推导了相关的Langevin方程。作为应用,我们重新计算了零温度下原子态的自然线宽的Wigner-Weisskopf公式,此外,还发现了由退相干项引起的温度展宽。我们的主方程还可以产生原子级的正确兰姆位移。这两个方程可用于稀释星际气体或腔中的少数粒子系统。

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