Exciton decay in Cu2O at high density and low temperature:: Auger recombination, spin-flip scattering, and molecule formation

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초록

In this paper, we examine the relative importance of three density-dependent decay mechanisms for excitons in cuprous oxide (Cu2O). Rate-equation models including Auger recombination (A), spin-flip scattering (B) and capture into short-lived biexcitons (C) are compared to photoluminescence data for a crystal temperature of 2 K. Process B-converting two orthoexcitons into two paraexcitons by exchanging electrons and holes-leaves the total exciton number unchanged and is inconsistent with the late-time data. In processes A and C, paraexcitons regenerate high energy excitons in agreement with the late-time data; however, the existing theory of Auger recombination seems to eliminate process A, leaving molecule formation as the dominant process. (c) 2005 Elsevier Ltd. All rights reserved.

키워드

AugerCu2OexcitonbiexcitonrecombinationKINETICS
제목
Exciton decay in Cu2O at high density and low temperature:: Auger recombination, spin-flip scattering, and molecule formation
저자
Jang, JIWolfe, JP
DOI
10.1016/j.ssc.2005.10.001
발행일
2006-01
유형
Article
저널명
Solid State Communications
137
1-2
페이지
91 ~ 96