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4. References

Landgraf J. and P. J. Crutzen, An efficient method for 'on-line' calculations of photolysis and heating rates, J. Atmos. Sci., 55, 863-878, 1998

Lean, J. G. J. Rottman, H. L. Kyle, T. N. Woods, J. R. Hickey, and L. C. Pugga, Detection and parameterisation of variations in solar mid-and-near-ultraviolet radiation (200-400nm), J. Geophys. Res., 102, 29939-29956, 1997

Manzini, E., and N. A. McFarlane, The effect of varying the source spectrum of a gravity wave parameterisation in a middle atmosphere general circulation model, J. Geophys. Res., 103, 31523-31539, 1998

Rroeckner, E., K. Arpe, L. Bengtsson, L. Christoph, M. Claussen, L. Dumenil, M. Esch, M. Giorgetta, U. Schlese, U. Schultzweida, The atmospheric General Circulation Model ECHAM-4: Model description and simulation of present-day climate, Report 218, Max-Plank-Institute for Meteorology, Hamburg, 1996

Steil B., M. Dameris, C. Bruehl, P. J. Crutzen, V. Grewe, M. Ponater and R. Sausen, Development of a chemistry module for GCMs: first results of a multi-annual integration, Annales Geophysicae, 16, 205-228, 1998

Zerefos, C. S., K. Tourpali, I. S. A. Isaksen, and C. J. E. Schuurmans, Long term solar induced variations in total ozone, stratospheric temperatures and the tropopause, Adv. In Space Res., 2000 (in press)


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