arXiv · 1510.07993
Polaritonic modes in a dense cloud of atoms
Abstract
We analyze resonant light scattering by an atomic cloud in a regime where near-field interactions between scatterers cannot be neglected. We first use a microscopic approach and calculate numerically the eigenmodes of the cloud for many different realizations. It is found that there always exists a small number of polaritonic modes that are spatially coherent and superradiant. We show that scattering is always dominated by these modes. We then use a macroscopic approach by introducing an effective permittivity so that the atomic cloud is equivalent to a dielectric particle. We show that there is a one-to-one correspondence between the microscopic polaritonic modes and the modes of a homogeneous particle with an effective permittivity.
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Nick Schilder, Christophe Sauvan, Jean-Paul Hugonin, Stephan Jennewein, Yvan Sortais, Antoine Browaeys, Jean-Jacques Greffet. 2015-10-27. Polaritonic modes in a dense cloud of atoms. https://doi.org/10.1103/physreva.93.063835
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