Complex exciton dynamics with elevated temperature in a GaAsSb/GaAs quantum well heterostructure

Author:

Li Hang1ORCID,Wang Ying1,Guo Yingnan1,Wang Shufang1ORCID,Fu Guangsheng1,Mazur Yuriy I.2ORCID,Ware Morgan E.2ORCID,Salamo Gregory J.2ORCID,Liang Baolai13ORCID

Affiliation:

1. Hebei Key Laboratory of Optic-electronic Information and Materials, College of Physics Science & Technology, Hebei University 1 , Baoding 071002, People's Republic of China

2. Institute for Nanoscience & Engineering, University of Arkansas 2 , Fayetteville, Arkansas 72701, USA

3. California NanoSystems Institute, University of California 3 Los Angeles, Los Angeles, California 90095, USA

Abstract

Exciton dynamics in a GaAsSb/GaAs quantum well (QW) heterostructure were investigated via both steady state and transient photoluminescence. The measurements at 10 K demonstrated the coexistence of localized excitons (LEs) and free excitons (FEs), while a blue-shift resulting from increased excitation intensity indicated their spatially indirect transition (IT) characteristics due to the type-II band alignment. With increasing temperature from 10 K, the LEs and FEs redistribute, with the LEs becoming less intense at relatively higher temperature. With increasing temperature to above 80 K, electrons in GaAs are able to overcome the small band offset to enter inside GaAsSb and recombine with holes; thus, a spatially direct transition (DT) appeared. Hence, we are able to reveal complex carrier recombination dynamics for the GaAsSb/GaAs QW heterostructure, in which the “S” shape behavior is generated not only by the carrier localization but also by the transformation from IT to DT with elevated temperature.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Hebei Province

Publisher

AIP Publishing

Subject

Physics and Astronomy (miscellaneous)

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