Quantum control of polariton emission in a microcavity-quantum well system under magnetic field

被引:0
|
作者
Urquijo-Rodriguez, Andres F. [1 ]
Gomez, Edgar A. [2 ]
Rodriguez, Boris [3 ]
Vinck-Posada, Herbert [1 ]
机构
[1] Univ Nacl Colombia, Dept Fis, Grp Superconductividad & Nanotecnol, Bogota 111321, Colombia
[2] Univ Quindio, Grp Invest Fis Teor & Computac, Programa Fis, Armenia 630004, Colombia
[3] Univ Antioquia UdeA, Grp Fis Atom & Mol, Inst Fis, Calle 70 52-21, Medellin, Colombia
关键词
microcavity; quantum well; light-matter interaction; exciton; polariton; photoluminescence; OSCILLATOR-STRENGTH; DIAMAGNETIC SHIFT; CONDENSATION; ENHANCEMENT;
D O I
10.1088/1361-648X/ad7ac3
中图分类号
O469 [凝聚态物理学];
学科分类号
070205 ;
摘要
In this work, a quantum dissipative model is employed to investigate the influence of a perpendicular magnetic field on the photoluminescence (PL) spectrum of a quantum well embedded within a microcavity. This model incorporates both the exact electron-hole interaction within the semiconductor and the light-matter coupling between the fundamental photonic mode and the fermionic particles. The loss and pumping mechanisms are described using the quantum master equation, and the PL spectrum is determined via the quantum regression theorem. Our findings demonstrate that the magnetic field acts as a control mechanism in the polariton emission energy, the emission linewidth and the intensity distribution along the emission line. Finally, it is observed that the magnetic field can redistribute the density matrix occupations leading to modifications in the average number of polaritons in the system.
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页数:9
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