Enhanced screening and spectral diversity in many-body elastic scattering of excitons in two-dimensional hybrid metal-halide perovskites

We quantify the sheepshead bay boats role of many-body elastic scattering effects on exciton dephasing rates in two-dimensional hybrid metal-halide perovskites by means of nonlinear coherent excitation spectroscopy at a temperature of 5 K.We find that the exciton-density dependence of excitation-induced dephasing (EID) is two to three orders of magnitude lower than in other atomic monolayer semiconductors such as transition metal dichalchogenides.Furthermore, EID is different for the multiple excitons evident in the excitation line shape, as is their phonon-mediated temperature stuart products emcelle tocopherol dependence.We ascribe these observations to screening effects due to polaronic dressing by the lattice.

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