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量子点单重态-三重态弛豫中的禁闭敏感性

Confinement sensitivity in quantum dot singlet-triplet relaxation.

作者信息

Wesslén C J, Lindroth E

机构信息

Department of Physics, Stockholm University, AlbaNova, S-106 91 Stockholm, Sweden.

出版信息

J Phys Condens Matter. 2017 Nov 15;29(45):455302. doi: 10.1088/1361-648X/aa8b34.

Abstract

Spin-orbit mediated phonon relaxation in a two-dimensional quantum dot is investigated using different confining potentials. Elliptical harmonic oscillator and cylindrical well results are compared to each other in the case of a two-electron GaAs quantum dot subjected to a tilted magnetic field. The lowest energy set of two-body singlet and triplet states are calculated including spin-orbit and magnetic effects. These are used to calculate the phonon induced transition rate from the excited triplet to the ground state singlet for magnetic fields up to where the states cross. The roll of the cubic Dresselhaus effect, which is found to be much more important than previously assumed, and the positioning of 'spin hot-spots' are discussed and relaxation rates for a few different systems are exhibited.

摘要

利用不同的限制势研究了二维量子点中自旋轨道介导的声子弛豫。在倾斜磁场作用下的双电子砷化镓量子点的情况下,将椭圆谐振子和圆柱阱的结果进行了相互比较。计算了包括自旋轨道和磁效应在内的两体单重态和三重态的最低能量集。利用这些结果计算了磁场作用下,直至态交叉处,声子诱导的从激发三重态到基态单重态的跃迁速率。讨论了立方德雷塞尔豪斯效应的作用(发现其比先前假设的重要得多)以及“自旋热点”的位置,并展示了几种不同系统的弛豫率。

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