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在光泵太赫兹量子级联放大器中突破曼利-罗量子效率极限

Circumventing the Manley-Rowe quantum efficiency limit in an optically pumped terahertz quantum-cascade amplifier.

作者信息

Waldmueller Inès, Wanke Michael C, Chow Weng W

机构信息

Sandia National Laboratories, Albuquerque, New Mexico 87185-1086, USA.

出版信息

Phys Rev Lett. 2007 Sep 14;99(11):117401. doi: 10.1103/PhysRevLett.99.117401.

Abstract

Using a microscopic theory based on the Maxwell-semiconductor Bloch equations, we investigate the feasibility of an optically pumped electrically driven terahertz (THz) quantum-cascade laser as a pathway to room-temperature THz generation. In optical conversion schemes the power conversion efficiency is limited by the Manley-Rowe relation. We circumvent this constraint by incorporating an electrical bias in a four level intersubband scheme, thereby allowing coherent recovery of the optical pump energy. The observed THz radiation is generated through both stimulated emission and automatically phase-matched quantum coherence contributions--making the proposed approach both a promising source for THz radiation and a model system for quantum coherence effects such as lasing without inversion and electromagnetically induced transparency.

摘要

基于麦克斯韦 - 半导体布洛赫方程的微观理论,我们研究了光泵浦电驱动太赫兹(THz)量子级联激光器作为实现室温太赫兹产生途径的可行性。在光转换方案中,功率转换效率受曼利 - 罗关系的限制。我们通过在四能级子带间方案中引入电偏置来规避这一限制,从而实现光泵浦能量的相干恢复。观测到的太赫兹辐射是通过受激发射和自动相位匹配的量子相干贡献产生的——这使得所提出的方法不仅是太赫兹辐射的一个有前景的源,也是诸如无反转激光和电磁诱导透明等量子相干效应的一个模型系统。

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