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Auger recombination and carrier multiplication in embedded silicon and germanium nanocrystals

2007/09/30 by Cem Sevik, C. Sevik, Ceyhun Bulutay +1 · 1 citation
Engineering · Materials Science · Physics and Astronomy · #Nanowire Synthesis and Applications #Quantum Dots Synthesis And Properties #Silicon Nanostructures and Photoluminescence #cond-mat.mtrl-sci

paper · pdf · doi:10.1103/physrevb.77.125414

published as Phys. Rev. B 77, 125414 (2008) · 4 pages, 6 figures (Published version)

openalex publication_date 2008/03/14 · arxiv created 2008/04/16 · arxiv updated 2009/12/01 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/28

Abstract

For Si and Ge nanocrystals (NCs) embedded in wide band-gap matrices, the Auger recombination and carrier multiplication (CM) lifetimes are computed exactly in a three-dimensional real space grid using empirical pseudopotential wave functions. Our results in support of recent experimental data offer other predictions. We extract simple Auger constants valid for NCs. We show that both Si and Ge NCs can benefit from photovoltaic efficiency improvement via CM due to the fact that under an optical excitation exceeding twice the band-gap energy, the electrons gain lion's share from the total excess energy and can cause a CM. We predict that CM becomes especially efficient for hot electrons with an excess energy of about 1\phantom\rule0.3em0exeV above the CM threshold.

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