Bhattacharya Pallab, Xiao Bo, Das Ayan, Bhowmick Sishir, Heo Junseok
Center for Photonic and Multiscale Nanomaterials, Department of Electrical Engineering and Computer Science, University of Michigan, Ann Arbor, Michigan 48109, USA.
Phys Rev Lett. 2013 May 17;110(20):206403. doi: 10.1103/PhysRevLett.110.206403. Epub 2013 May 15.
Inversionless ultralow threshold coherent emission, or polariton lasing, can be obtained by spontaneous radiative recombination from a degenerate polariton condensate with nonresonant excitation. Such excitation has, hitherto, been provided by an optical source. Coherent emission from a GaAs-based quantum well microcavity diode with electrical injection is observed here. This is achieved by a combination of modulation doping of the wells, to invoke polariton-electron scattering, and an applied magnetic field in the Faraday geometry to enhance the exciton-polariton saturation density. These measures help to overcome the relaxation bottleneck and to form a macroscopic and degenerate condensate as evidenced by angle-resolved luminescence, light-current characteristics, spatial coherence, and output polarization. The experiments were performed at 30 K with an applied field of 7 T.
通过非共振激发的简并极化激元凝聚体的自发辐射复合,可以实现无反转超低阈值相干发射,即极化激元激光发射。迄今为止,这种激发是由光源提供的。本文观察到了基于GaAs的量子阱微腔二极管在电注入下的相干发射。这是通过对量子阱进行调制掺杂以引发极化激元 - 电子散射,并在法拉第几何结构中施加磁场以提高激子 - 极化激元饱和密度来实现的。这些措施有助于克服弛豫瓶颈并形成宏观简并凝聚体,角分辨发光、光电流特性、空间相干性和输出极化证明了这一点。实验在30 K和7 T的外加磁场下进行。