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Ionized Acceptor Bound Exciton States in Wurtzite GaN/Al_xGa(1-x)N Cylindrical Quantum Dot

Ionized Acceptor Bound Exciton States in Wurtzite GaN/Al_xGa(1-x)N Cylindrical Quantum Dot
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摘要 Based on the framework of the effective-mass approximation,the ionized acceptor bound exciton(A-,X) binding energy and the emission wavelength are investigated for a cylindrical wurtzite(WZ) GaN/Al x Ga1-x N quantum dot(QD) with finite potential barriers by means of a variational method.Numerical results show that the binding energy and the emission wavelength highly depend on the QD size,the position of the ionized acceptor and the Al composition x of the barrier material Al x Ga1-x N.The binding energy and the emission wavelength are larger when the acceptor is located in the vicinity of the left interface of the QD.In particular,the binding energy of(A-,X) complex is insensitive to the dot height when the acceptor is located at the left boundary of the QD.The ionized acceptor bound exciton binding energy and the emission wavelength are both increased if Al composition x is increased. Based on the framework of the effective-mass approximation, the ionized acceptor bound exciton (A- X) binding energy and the emission wavelength are investigated for a cylindrical wurtzite (WZ) GaN/A1x Ga1-xN quantum dot (QD) with finite potential barriers by means of a variational method. Numerical results show that the binding energy and the emission wavelength highly depend on the QD size, the position of the ionized acceptor and the Al composition x of the barrier material AIxGal-xN. The binding energy and the emission wavelength are larger when the acceptor is located in the vicinity of the left interface of the QD. In particular, the binding energy of ( A-, X) complex is insensitive to the dot height when the acceptor is located at the left boundary of the QD. The ionized acceptor bound exciton binding energy and the emission wavelength are both increased if Al composition x is increased.
出处 《Communications in Theoretical Physics》 SCIE CAS CSCD 2012年第1期151-156,共6页 理论物理通讯(英文版)
基金 Supported by Technology Projects of the Education Bureau of Fujian Province umder Grant No. JK2009038
关键词 量子点 纤锌矿 离子 接受器 激子结合能 发射波长 子束 柱形 quantum dot, ionized acceptor bound exciton, binding energy, emission wavelength
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