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Filtered by keyword:ozone

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  1. Austin, J., J. Knight, and N. Butchart (2000), Three-dimensional chemical model simulations of the ozone layer: 1979–2015Q. J. R. Meteorol. Soc., 126, 1533–1556.
  2. Brunner, D., J. Staehlin, D. Jeker, H. Wernli, and U. Schumann (2001), Nitrogen oxides and ozone in the tropopause region of the Northern Hemisphere: Measurements from commercial in 1995/1996 and 1997J. Geophys. Res., 106(D21), 27,673–27,699.
  3. Chae, J. H. and S. C. Sherwood (2007), Annual temperature cycle of the tropical tropopause: A simple model studyJ. Geophys. Res.: Atm., 112, D19111, doi:10.1029/2006JD007956.
  4. Drouin, B. J., J. Fischer, and R. R. Gamache (2002), Temperature dependent pressure induced lineshape of O3 rotational transitions in airJ. Quant. Spectrosc. Radiat. Transfer, 83, 63–81.
  5. Eriksson, P. and D. Chen (2002), Statistical parameters derived from ozonesonde data of importance for passive remote sensing observations of ozoneInt. J. Remote Sensing, 23(22), 4945–4963.
  6. Erukhimova, T. L. and E. V. Suvorov (2001), Retrieval of Ozone-Denisty and Atmospheric-Temperature Profiles using the Spectra of Microwave Absorption in two Rotational Ozone LinesRadiophys. Quant. Elec., 44(1–2), 129–136.
  7. Fels, S. B., J. D. Mahlman, M. D. Schwarzkopf, and R. W. Sinclair (1980), Stratospheric Sensitivity to Perturbations in Ozone and Carbon Dioxide: Radiative and Dynamical ResponseJ. Atmos. Sci., 37, 2265–2297.
  8. Folkins, I. and R. V. Martin (2005), The Vertical Structure of Tropical Convection and Its Impact on the Budget of Water Vapor and OzoneJ. Atmos. Sci., 62, 1560–1573.
  9. Gamache, R. R. (2001), Analytical Evaluation of the Maxwell-Boltzmann Velocity Average in Pressure-Broadenend Half-Width CalculationsJ. Molec. Spectro., 208, 79–86.
  10. Gamache, R. R. and R. W. Davies (1985), Theoretical N2-, O2-, and Air-Broadenend Halfwidths of 16O3 Calculated by Quantum Fourier Transform Theory with Realistic Collision Dynamics, University of Lowell Research Foundation.
  11. Gamache, R. R., E. Arie, C. Boursier, and J.-M. Hartmann (1998), Pressure-broadening and pressure-shifting of spectral lines of ozoneSpectrochimica Acta, 54, 35–63.
  12. Hallar, A. Gannet, L. M. Avallone, R. L. Herman, B. E. Anderson, and A. J. Heymsfield (2004), Measurements of ice water content in tropopause region Arctic cirrus during the SAGE III Ozone Loss and Validation Experiment (SOLVE)J. Geophys. Res., 109, D17203, doi:10.1029/2003JD004348.
  13. Hoogen, R., V. V. Rozanov, and J. P. Burrows (1999), Ozone profiles from GOME satellite data: Algorithm descripition and first validationJ. Geophys. Res.
  14. Isaksen, I. S. A. (1994), Reduction of stratospheric ozone from chlorine and bromine emmissions, and the effect on tropospheric chemistry, University of Ohio.
  15. Kikuchi, K., T. Nishibori, S. Ochiai, H. Ozeki, Y. Irimajiri, Y. Kasai, M. Koike, T. Manabe, K. Mizukoshi, Y. Murayama, T. Nagahama, T. Sano, R. Sato, M. Seta, C. Takahashi, M. Takayanagi, H. Masuko, J. Inatani, M. Suzuki, and M. Shiotani (2010), Overview and early results of the Superconducting Submillimeter-Wave Limb-Emission Sounder (SMILES)J. Geophys. Res., 115, D23306, doi:10.1029/2010JD014379.
  16. Krueger, J. P. and I. H. Rowlands (1996), Protecting the earth's ozone layerGlobal Environmental Change, 6(3), 245–247.
  17. Ladstätter-Weissenmayer, A., J. Meyer-Arnek, A. Schlemm, and J. P. Burrows (2004), Influence of stratospheric airmasses on tropospheric vertical O3 columns based on GOME (Global Ozone Monitoring Experiment) measurements and backtrajectory calculation over the PacificAtmos. Chem. Phys., 4, 903–909, doi:10.5194/acp-4-903-2004.
  18. Mandal, T. K., J. Y. N. Cho, P. B. Rao, A. R. Jain, S. K. Peshin, S. K. Srivastava, A. K. Bohra, and A. P. Mitra (1998), Stratosphere-troposphere ozone exchange observed with the Indian MST radar and a simultaneous balloon-borne ozonesondeRadio Sci., 33(4), 861–893.
  19. Megie, G. (1994), Stratospheric ozone, Universite Pierre-et-Marie-Curie.
  20. Prather, M., P. Midgley, F. Sherwood Rowland, and R. Stolarski (1996), The ozone layer: the road not takenNature, 381, 551–554.
  21. Priem, D., J.-M. Colmont, F. Rohart, G. Wlodarczak, and R. R. Gamache (2000), Relaxation and Lineshape of the 500.4.-GHz Line of Ozone Perturbed by N2 and O2J. Molec. Spectro., 204, 204–215.
  22. Rinsland, C. P., et al. (1998), Spectroscopic parameters for ozone and its isotopes: recent measurements, outstanding issus, and prospects for improvements to HITRANJ. Quant. Spectrosc. Radiat. Transfer.
  23. Sandermann Jr., H. (1998), Ozone: An Air Pollutant Acting as a Plant-Signaling MoleculeNaturwissenschaften, 85, 369–375.
  24. Schumann, U. (2002), Aircraft Emissions, Institute fuer Physik der Atmosphaere.
  25. Sinnhuber, B.-M., J. Langer, U. Klein, U. Raffalski, and K. Kuenzi (1998), Ground based millimeter-wave observations of Arctic ozone during winter and spring 1996/97Geophys. Res. Lett., 25(17), 3327–3330.
  26. Suzuki, M., K. Shibasaki, H. Shimoda, and T. Ogawa (1999), Overview of GCOM-A-1 science program, Society of the Photo-Optical Instrumentation Engineers, EUROPTO Conference on Sensors, Systems, and Next-Generation Satellites V.
  27. Toohey, D. W., J. M. Pierson, and K. A. McKinney (1995), In Situ Observations of Cl0 and BrO, Proc. of the 3. European Workshop, Schliersee, Polar Stratospheric Ozone.
  28. Wang, W.-C., X.-Z. Liang, M. P. Dudek, D. Pollard, and S. L. Thompson (1995), Atmospheric ozone as a climate gasAtmos. Res., 37, 247–256.
  29. xxxx (1998), Ozone: What is it, and why do we care about it?, Goddard Space Flight Center.