Individual Reports from JETDLAG Contributors

[1]  P. Warneck Chemistry of the natural atmosphere , 1999 .

[2]  P. Werle Spectroscopic trace gas analysis using semiconductor diode lasers , 1996 .

[3]  J. Roths,et al.  The tropospheric distribution of carbon monoxide as observed during the Tropoz II experiment , 1996 .

[4]  P. Werle,et al.  Measurements of formaldehyde by tunable diode laser spectroscopy and the enzymatic-fluorometric method: An intercomparison study , 1996 .

[5]  P. Werle Laser excess noise and interferometric effects in frequency-modulated diode-laser spectrometers , 1995 .

[6]  Peter Werle,et al.  Real-time signal-processing concepts for trace-gas analysis by diode-laser spectroscopy , 1994 .

[7]  Bodo Scheumann,et al.  Calibration procedures for tunable diode laser spectrometers , 1994, Other Conferences.

[8]  Peter W. Werle,et al.  Signal processsing strategies for tunable diode laser spectroscopy , 1994, Other Conferences.

[9]  P. Werle Analytical applications of infrared semiconductor lasers in atmospheric trace gas monitoring , 1994 .

[10]  M. Tacke,et al.  Guided modes and far-field patterns of lead chalcogenide buried heterostructure laser diodes , 1994 .

[11]  R E Warren,et al.  Signal-to-noise ratio enhancement in frequency-modulation spectrometers by digital signal processing. , 1994, Optics letters.

[12]  A. Lambrecht,et al.  Shadow mask MBE for the fabrication of lead chalcogenide buried heterostructure lasers , 1993 .

[13]  P. Werle,et al.  The limits of signal averaging in atmospheric trace-gas monitoring by tunable diode-laser absorption spectroscopy (TDLAS) , 1993 .

[14]  Leonard Newman,et al.  Measurement challenges in atmospheric chemistry , 1993 .

[15]  John P. Burrows,et al.  Tunable diode laser measurements of trace gases during the 1988 Polarstern cruise and intercomparisons with other methods , 1992 .

[16]  G. Baldacchini,et al.  A review of experiments and theory for collisional line shape effects in the rotovibrational ammonia spectrum , 1991 .

[17]  Wolfgang J. Riedel,et al.  Optics for tunable diode laser spectrometers , 1991, Photonics West - Lasers and Applications in Science and Engineering.

[18]  P. Werle,et al.  Signal-to-noise ratio analysis in laser absorption spectrometers using optical multipass cells. , 1991, Applied optics.

[19]  P. Mak,et al.  Single‐mode molecular beam epitaxy grown PbEuSeTe/PbTe buried‐heterostructure diode lasers for CO2 high‐resolution spectroscopy , 1991 .

[20]  A. Tuck,et al.  Instrumental Requirements for Global Atmospheric Chemistry , 1990, Science.

[21]  D. Lenschow,et al.  Airborne flux measurements and budget estimates of trace species over the Amazon Basin during the GTE/ABLE 2B expedition. [Global Tropospheric Experiment/Amazon Boundary Layer Experiment] , 1990 .

[22]  Peter Werle,et al.  Quantum-limited FM-spectroscopy with a lead-salt diode laser , 1989 .

[23]  P. Werle,et al.  Wideband noise characteristics of a lead-salt diode laser: possibility of quantum noise limited TDLAS performance. , 1989, Applied optics.

[24]  S. Marchetti,et al.  Self‐broadening and self‐shifting of ammonia lines in the 2ν2 band around 16 μm , 1985 .

[25]  D. E. Cooper,et al.  Double frequency modulation spectroscopy: high modulation frequency with low-bandwidth detectors. , 1985, Applied optics.

[26]  E. Whittaker,et al.  Laser FM spectroscopy with photochemical modulation , 1984 .

[27]  O. Tarrini,et al.  Pressure shift of gases in the microwave region , 1970 .

[28]  P. Anderson Pressure Broadening in the Microwave and Infra-Red Regions , 1949 .

[29]  R. Clark,et al.  Spectroscopy in environmental science , 1995 .

[30]  I. Carrasco Etude et realisation d'un spectrometre a diodes laser pour la mesure de constituants minoritaires dans la troposphere , 1994 .

[31]  Harold I. Schiff,et al.  The use of tunable diode laser absorption spectroscopy for atmospheric measurements , 1994 .

[32]  M. Sigrist Air monitoring by spectroscopic techniques , 1994 .

[33]  M. Tacke,et al.  Molecular beam epitaxy of laterally structured lead chalcogenides for the fabrication of buried heterostructure lasers , 1993 .

[34]  J. Burrows,et al.  Measurements of Trace Gases using Tunable Diode Lasers during the 1988 Polarstern Cruise and Intercomparisons with Other Methods , 1992 .

[35]  A. Nadezhdinskii,et al.  Fiber Optic Accessories for Molecular Spectroscopy and Gas Analysis with Tunable Diode Lasers in the Middle Infrared , 1992 .

[36]  G. Schmidtke,et al.  Atmospheric Trace Gas Measurement on the Schauinsland Surveying Station , 1989 .

[37]  H. Preier,et al.  Monitoring of gaseous pollutants by tunable diode lasers , 1987 .

[38]  G. Bjorklund,et al.  Frequency-modulation spectroscopy: a new method for measuring weak absorptions and dispersions. , 1980, Optics letters.

[39]  C. J. Tsao,et al.  Line-widths of pressure-broadened spectral lines , 1962 .