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Exciton decay in Cu2O at high density and low temperature:: Auger recombination, spin-flip scattering, and molecule formation
- Jang, JI;
- Wolfe, JP
WEB OF SCIENCE
20SCOPUS
18초록
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
- 제목
- Exciton decay in Cu2O at high density and low temperature:: Auger recombination, spin-flip scattering, and molecule formation
- 저자
- Jang, JI; Wolfe, JP
- 발행일
- 2006-01
- 유형
- Article
- 권
- 137
- 호
- 1-2
- 페이지
- 91 ~ 96