Razeghi Manijeh, Zhou Wenjia, Slivken Steven, Lu Quan-Yong, Wu Donghai, McClintock Ryan
Appl Opt. 2017 Nov 1;56(31):H30-H44. doi: 10.1364/AO.56.000H30.
The quantum cascade laser (QCL) is becoming the leading laser source in the mid-infrared (mid-IR) range, which contains two atmospheric transmission windows and many molecular fingerprint absorption features. Since its first demonstration in 1994, the QCL has undergone tremendous development in terms of the output power, wall plug efficiency, wavelength coverage, tunability and beam quality. At the Center for Quantum Devices, we have demonstrated high-power continuous wave operation of QCLs covering a wide wavelength range from 3 to 12 μm, with power output up to 5.1 W at room temperature. Recent research has resulted in power scaling in pulsed mode with up to 203 W output, electrically tunable QCLs based on monolithic sampled grating design, heterogeneous QCLs with a broad spectral gain, broadly tunable on-chip beam-combined QCLs, QCL-based mid-IR frequency combs, and fundamental mode surface emitting quantum cascade ring lasers. The developed QCLs will be the basis for a number of next-generation spectroscopy and sensing systems.
量子级联激光器(QCL)正成为中红外(mid-IR)波段的主导激光源,该波段包含两个大气传输窗口以及许多分子指纹吸收特征。自1994年首次展示以来,QCL在输出功率、壁插效率、波长覆盖范围、可调谐性和光束质量等方面都取得了巨大的发展。在量子器件中心,我们已经展示了QCL的高功率连续波运行,其波长范围从3至12μm,室温下的功率输出高达5.1W。最近的研究成果包括脉冲模式下的功率提升,输出功率高达203W;基于单片采样光栅设计的电调谐QCL;具有宽光谱增益的异质QCL;宽可调谐片上光束组合QCL;基于QCL的中红外频率梳;以及基模表面发射量子级联环形激光器。所开发的QCL将成为众多下一代光谱学和传感系统的基础。