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Collective spontaneous emission from small assemblies of atoms

机译:小原子集合的集体自发发射

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We study collective spontaneous emission from arbitrary distributions of N two-state atoms using quantum trajectory theory and without an a priori single-mode assumption. Assuming a fully excited initial state, we calculate the angular distribution of the average integrated intensity. We investigate the dependence of the angular distribution of emission on the geometry of the atomic distribution. The formalism is developed around an unravelling of the master equation in terms of source mode quantum jumps. A modified boson approximation is made to treat the many-atom case, where it is found that strong directional superradiance occurs for a few hundred to a few thousand atoms. In order to illustrate important differences between our model and single-mode models we consider shot-to-shot intensity fluctuations and angular correlations in the emitted intensity.
机译:我们使用量子轨迹理论研究了N个二态原子的任意分布的集体自发发射,而没有先验的单模假设。假设完全激发的初始状态,我们计算平均积分强度的角度分布。我们研究了发射角分布对原子分布几何形状的依赖性。形式主义是围绕源模量子跃迁解开主方程式而发展的。进行了修正的玻色子近似以处理多原子的情况,在这种情况下,发现数百到几千个原子会发生强方向超辐射。为了说明我们的模型与单模模型之间的重要区别,我们考虑了逐次强度波动和发射强度的角度相关性。

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