Effect of recombination process in femtosecond laser-induced modification on Ge crystal*

Author:

Ju Jia-Qi,Qin Zi-Yao,Liu Ju-Kun,Zhao Hong-Wei,Huang Yao-Qing,Hu Rong-Rong,Wu Hua

Abstract

The dynamics of produced excited carriers under the irradiation of Ge crystal is investigated theoretically by using femtosecond laser pulse. A two-temperature model combined with the Drude model is also used to study the nonequilibrium carrier density, carrier and lattice temperatures, and optical properties of the crystal. The properties of the surface plasmon wave when excited are also studied. The influences of non-radiation and radiative recombination process on the photoexcitation of the semiconductor during pulse and the relaxation after the pulse are described in detail. The results show that the effects of Auger recombination on the nonequilibrium carrier density and optical properties of the crystal and the properties of the surface plasmon polariton are great, whereas the effect of radiative recombination is extremely small.

Publisher

IOP Publishing

Subject

General Physics and Astronomy

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