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1
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0028304539
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Quantum cascade laser
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Cho, A.Y.6
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2
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0036757469
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Sub-part-per-billion detection of nitric oxide in air using a thermoelectrically cooled mid-infrared quantum cascade laser spectrometer
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D. D. Nelson, J. H. Shorter, J. B. McManus und M. S. Zahniser: Sub-part-per-billion detection of nitric oxide in air using a thermoelectrically cooled mid-infrared quantum cascade laser spectrometer, Appl. Phys. B 75, 343-350 (2002).
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Nelson, D.D.1
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Zahniser, M.S.4
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3
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0033289593
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Methane concentration and isotopic composition measurements with a mid-infrared quantum-cascade laser
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A. A. Kosterev, R. F. Curl, F. K. Tittel, C. Gmachl, F. Capasso, D. L. Sivco, J. N. Baillergeon, A. L. Hutchinson und A. Y. Cho: Methane concentration and isotopic composition measurements with a mid-infrared quantum-cascade laser, Opt. Lett. 24, 1762-1764 (1999).
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Kosterev, A.A.1
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Gmachl, C.4
Capasso, F.5
Sivco, D.L.6
Baillergeon, J.N.7
Hutchinson, A.L.8
Cho, A.Y.9
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4
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Fast gas spectroscopy using pulsed quantum cascade lasers
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T. Beyer, M. Braun und A. Lambrecht: Fast gas spectroscopy using pulsed quantum cascade lasers, J. Appl. Phys, 93, 3158-3160 (2003).
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Beyer, T.1
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Continuous wave operation of a mid-infrared semiconductor laser at room temperature
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M. Beck, D. Hofstetter, T. Aellen, J. Faist, U. Oesterle, M. Ilegems, E. Gini und H. Melchior: Continuous Wave Operation of a Mid-Infrared Semiconductor Laser at Room Temperature, Science 295, 301-305 (2002).
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Beck, M.1
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Ilegems, M.6
Gini, E.7
Melchior, H.8
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6
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0142089066
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High-power continuous-wave operation of a 6 μm quantum-cascade laser at room temperature
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J. S. Yu, S. Slivken, A. Evans, L. Doris und M. Razeghi: High-power continuous-wave operation of a 6 μm quantum-cascade laser at room temperature, Appl. Phys. Lett. 83, 2503-2305 (2003).
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Yu, J.S.1
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7
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84876601018
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T. Beyer und A. Lambrecht, Fraunhofer-Institut für Physikalische Meßtechnik (IPM), Heidenhofstraße 8, D-79110 Freiburg, Germany, private Diskussionen
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T. Beyer und A. Lambrecht, Fraunhofer-Institut für Physikalische Meßtechnik (IPM), Heidenhofstraße 8, D-79110 Freiburg, Germany, private Diskussionen.
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9
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84876621040
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Die InP-basierten QCL-Strukturen wurden am Fraunhofer-Institut für Angewandte Festkörperphysik (IAF), Tullastraße 72, D-79108 Freiburg, hergestellt
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Die InP-basierten QCL-Strukturen wurden am Fraunhofer-Institut für Angewandte Festkörperphysik (IAF), Tullastraße 72, D-79108 Freiburg, hergestellt.
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10
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84876625456
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Die GaAs-basierten QCL-Strukturen wurden an der Universität Würzburg, Technische Physik, Am Hubland, D-97074 Würzburg, hergestellt
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Die GaAs-basierten QCL-Strukturen wurden an der Universität Würzburg, Technische Physik, Am Hubland, D-97074 Würzburg, hergestellt.
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11
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0141860223
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Measurements of Relative Intensity Noise (RIN) in semiconductor-lasers
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High-frequency intensity noise of lead-salt diode-lasers
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H. Fischer und M. Tacke: High-Frequency Intensity Noise of Lead-Salt Diode-Lasers, J. Opt. Soc. Am. B 8, 1824-1830 (1991).
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Fischer, H.1
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Intensity noise and polarization stability of GaAlAs-GaAs surface emitting lasers
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F. Koyania, K. Morito und K. Iga: Intensity Noise and Polarization Stability of GaAlAs-GaAs Surface Emitting Lasers, IEEE J. Quantum Electron. QE-27, 1410-1416 (1991).
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Koyania, F.1
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Intensity noise properties of quantum cascade laser
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T. Gensty, W. Elsäßer und C. Mann: Intensity noise properties of quantum cascade laser, Opt. Express 13, 2032-2039 (2005), http://www.opticsexpress.org/abstract.cfm?URI=OPEX-13-6-2032.
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Gensty, T.1
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A dielectric omnidirectional reflector
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Y. Fink, J. N. Winn, S. Fan, C. Chen, J. Michel, J. D. Joannopoulos und E. L. Thomas: A Dielectric Omnidirectional Reflector, Science 282, 1679-1682 (1998).
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Fink, Y.1
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Thomas, E.L.7
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