Gain in quantum cascade lasers and superlattices: A quantum transport theory
暂无分享,去创建一个
Gain in current-driven semiconductor heterostructure devices is calculated within the theory of nonequilibrium Green functions. In order to treat the nonequilibrium distribution self-consistently the full two-time structure of the theory is employed without relying on any sort of Kadanoff-Baym ansatz. The results are independent of the choice of the electromagnetic field if the variation of the self-energy is taken into account. Excellent quantitative agreement is obtained with the experimental gain spectrum of a quantum cascade laser. Calculations for semiconductor superlattices show that the simple two-time miniband transport model gives reliable results for large miniband widths at room temperature.
[1] Stephan W Koch,et al. Quantum theory of the optical and electronic properties of semiconductors, fifth edition , 2009 .
[2] S. Datta. Electronic transport in mesoscopic systems , 1995 .
[3] Hartmut Haug,et al. Quantum Kinetics in Transport and Optics of Semiconductors , 2004 .
[4] H. Kroemer. Large-amplitude oscillation dynamics and domain suppression in a superlattice Bloch oscillator , 2000, cond-mat/0009311.
[5] Leo P. Kadanoff,et al. Quantum Statistical Mechanics , 2018 .