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作 者:周明艳 徐文 肖宜明 肖欢 李龙龙 Francois M.Peeters 李浩文 陈思凡 ZHOU Ming-Yan;XU Wen;XIAO Yi-Ming;XIAO Huan;LI Long-Long;Francois MPeeters;LI Hao-Wen;CHEN Si-Fan(School of Physics and Astronomy,Yunnan University,Kunming 650091,China;Micro Optical Instruments Inc,Shenzhen 518118,China;Institute of Solid State Physics,Hefei Institutes of Physical Science,Chinese Academy of Sciences,Hefei 230031,China;Department of Physics,University of Antwerp,Antwerp B-2020,Belgium;College of New Materials and New Energies,Shenzhen Technology University,Shenzhen 518118,China)
机构地区:[1]云南大学物理与天文学院,云南昆明650091 [2]深圳网联光仪科技有限公司,广东深圳518118 [3]中国科学院合肥物质科学研究院固体物理研究所,安徽合肥230031 [4]安特卫普大学物理系,比利时安特卫普B-2020 [5]深圳技术大学新材料与新能源学院,广东深圳515118
出 处:《红外》2023年第1期23-31,共9页Infrared
基 金:深圳市科技计划项目(KQTD20190929173954826);国家自然科学基金项目(U1930116,U206720039,12004331)。
摘 要:中红外(Mid-infrared,MIR)量子级联激光器(Quantum Cascade Laser,QCL)已被广泛应用于定向红外对抗、自由空间光通信、痕量气体传感等重要领域。利用Nextnano++软件进一步完善了自洽计算基于MIR QCL器件的薛定谔方程和泊松方程的理论方法。针对InP衬底上生长的GaInAs/AlInAs多量子阱MIR QCL器件,研究了四能级双声子共振QCL结构中有源区的电子子带能级结构,并对这些子带能级随器件工作温度、驱动电场、注入区掺杂浓度等变化的规律进行了系统研究,获得了与实验结果一致的理论结果。此工作为MIR QCL器件的生长和制备提供了理论设计和研究方法,为了解器件工作条件提供了理论预期,也为进一步提高MIR QCL的发光功率和效率提供了理论研究支撑。The mid-infrared(MIR)quantum cascade lasers(QCLs)have been widely applied in the fields such as directional infrared countermeasure,free-space optical communication,trace gas sensing,and other important fields.We further improve the theoretical approach for self-consistent solution of the Schr9dinger equation and the Poisson equation based on the MIR QCL device using the Nextnano++software.We calculate the electronic subband structure in the active region of the four-level and double-phonon resonant QCL structure for GaInAs/AlInAs multi-quantum well-based MIR QCL devices grown on InP substrate.The dependence of these subband energies upon device operating temperature,driving electric field,and doping concentration in the injection region are studied.Theoretical findings are in line with the experimental results.This work provides theoretical design and research methods for the growth and preparation of MIR QCL devices,provides theoretical expectations for understanding the working conditions of devices,and provides theoretical research support for further improving the luminescence power and efficiency of MIR QCL.
关 键 词:量子级联激光器 中红外 GaInAs/AlInAs
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