Pair-excitation energetics of highly correlated many-body states

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Abstract

A microscopic approach is developed to determine the excitation energetics of highly correlated quasi-particles in optically excited semiconductors based entirely on a pair-correlation function input. For this purpose, the Wannier equation is generalized to compute the energy per excited electron-hole pair of a many-body state probed by a weak pair excitation. The scheme is verified for the degenerate Fermi gas and incoherent excitons. In a certain range of experimentally accessible parameters, a new stable quasi-particle state is predicted which consists of four to six electron-hole pairs forming a liquid droplet of fixed radius. The energetics and pair-correlation features of these 'quantum droplets' are analyzed. © IOP Publishing and Deutsche Physikalische Gesellschaft.

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Mootz, M., Kira, M., & Koch, S. W. (2013). Pair-excitation energetics of highly correlated many-body states. New Journal of Physics, 15. https://doi.org/10.1088/1367-2630/15/9/093040

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