From CO2 laser to quantum cascade lasers-A saga of high power infrared lasers

被引:3
|
作者
Patel, C. Kumar N. [1 ,2 ]
机构
[1] Univ Calif Los Angeles, Dept Phys & Astron, Los Angeles, CA 90095 USA
[2] Pranalytica Inc, Santa Monica, CA 90401 USA
关键词
VIBRATIONAL-ROTATIONAL TRANSITIONS; STRATOSPHERIC NITRIC-OXIDE; HIGH-SENSITIVITY DETECTION; OPTICAL MASER ACTION; ENERGY TRANSFER; CW LASER; PHOTOACOUSTIC-SPECTROSCOPY; HARMONIC GENERATION; AIR-POLLUTION; CO2; LASER;
D O I
10.2351/1.3263623
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The era of high continuous laser power in the infrared region of the spectrum started with the first demonstration of laser action on the vibrational-rotational transitions of molecules and the invention of the carbon dioxide laser [C. K. N. Patel, "Interpretation of CO2 Optical Maser Experiments," Phys. Rev. Lett. 12, 588-590 (1964)] in 1964. The progress in the high power molecular lasers was swift and led to an explosion of scientific and practical applications in the infrared. The romance with high power infrared lasers that started with in 1964 is still very much alive today. New types of infrared lasers, notably the quantum cascade lasers (QCLs) are carving out a special niche in this arena. Applications of these lasers abound, both in science and industry. In reviewing the fun and excitement of the past as well as what may be in store for us in the future, I will focus on the current impact of the high power midwave and long wave infrared QCLs [A. Lyakh, C. Pflugl, L. Diehl, Q. J. Wang, Federico Capasso, X. J. Wang, J. Y. Fan, T. Tanbun-Ek, R. Maulini, A. Tsekoun, R. Go, and C. Kumar N. Patel, "1.6 Watt, High Wallplug Efficiency, Continuous-Wave Room Temperature Quantum Cascade Laser Emitting at 4.6 mu m," Appl. Phys. Lett. 92, 111110 (2008)] in many defense and homeland security related applications [C. K. N. Patel, "Laser Photoacoustic Spectroscopy Helps Fight Terrorism: High Sensitivity Detection of Chemical Warfare Agent and Explosives," Eur. Phys. J. Spec. Top. 153, 1-18 (2008)]. In this paper I will recount some of the key advances in the high power lasers and their applications. (C) 2010 Laser Institute of America.
引用
收藏
页码:224 / 238
页数:15
相关论文
共 50 条
  • [21] CO2 lasers and laser systems
    不详
    MANUFACTURING ENGINEERING, 2007, 138 (05): : LT10 - LT10
  • [22] High power mid-infrared interband cascade lasers
    Yang, BH
    Zhang, D
    Yang, RQ
    Lin, CH
    Murry, SJ
    Wu, H
    Pei, SS
    INFRARED APPLICATIONS OF SEMICONDUCTORS II, 1998, 484 : 89 - 94
  • [23] Power supplies for CO2 lasers
    Lebedev, V.K.
    Shelyagin, V.D.
    Soviet electrical engineering, 1988, 59 (11): : 50 - 55
  • [24] Higher power CO2 lasers
    Fluid Power J, 5 (42):
  • [25] Mid-infrared quantum cascade lasers
    Bugajski, Maciej
    Pierscinska, Dorota
    Gutowski, Piotr
    Pierscinski, Kamil
    Sobczak, Grzegorz
    Janus, Kamil
    Sankowska, Iwona
    Michalak, Krzysztof
    Chmielewski, Krzysztof
    Branas, Joanna
    Kuzmicz, Aleksander
    LASER TECHNOLOGY 2018: PROGRESS AND APPLICATIONS OF LASERS, 2018, 10974
  • [26] Infrared Spectroscopy Based on Quantum Cascade Lasers
    Wen Zhong-quan
    Chen Gang
    Peng Chen
    Yuan Wei-qing
    SPECTROSCOPY AND SPECTRAL ANALYSIS, 2013, 33 (04) : 949 - 953
  • [27] Mid-infrared quantum cascade lasers
    Yao, Yu
    Hoffman, Anthony J.
    Gmachl, Claire F.
    NATURE PHOTONICS, 2012, 6 (07) : 432 - 439
  • [28] Mid-infrared quantum cascade lasers
    Yu Yao
    Anthony J. Hoffman
    Claire F. Gmachl
    Nature Photonics, 2012, 6 (7) : 432 - 439
  • [29] Quantum Cascade Lasers in Biomedical Infrared Imaging
    Bird, Benjamin
    Baker, Matthew J.
    TRENDS IN BIOTECHNOLOGY, 2015, 33 (10) : 557 - 558
  • [30] High-efficiency, high-power mid-infrared quantum cascade lasers [Invited]
    Botez, Dan
    Kirch, Jeremy D.
    Boyle, Colin
    Oresick, Kevin M.
    Sigler, Chris
    Kim, Honghyuk
    Knipfer, Benjamin B.
    Ryu, Jae Ha
    Lindberg, Don, III
    Earles, Tom
    Mawst, Luke J.
    Flores, Yuri V.
    OPTICAL MATERIALS EXPRESS, 2018, 8 (05): : 1378 - 1398