Monte Carlo simulation of light scattering in the atmosphere and effect of atmospheric aerosols on the point spread function.
暂无分享,去创建一个
[1] Didier Tanré,et al. Adjacency effect produced by the atmospheric scattering in thematic mapper data , 1987 .
[2] W. Pearce,et al. Monte Carlo study of the atmospheric spread function. , 1986, Applied optics.
[3] R. S. Fraser,et al. Adjacency effects on imaging by surface reflection and atmospheric scattering: cross radiance to zenith. , 1979, Applied optics.
[4] D T Delpy,et al. The use of the Henyey–Greenstein phase function in Monte Carlo simulations in biomedical optics , 2006, Physics in medicine and biology.
[5] G. Mie. Beiträge zur Optik trüber Medien, speziell kolloidaler Metallösungen , 1908 .
[6] O. Boucher. On Aerosol Direct Shortwave Forcing and the Henyey-Greenstein Phase Function. , 1998 .
[7] K. Louedec,et al. Ramsauer approach for light scattering on nonabsorbing spherical particles and application to the Henyey-Greenstein phase function. , 2012, Applied optics.
[8] Petr Ne esal. The Fluorescence Detector of the Pierre Auger Observatory , 2011 .
[9] Piero Bruscaglioni,et al. Atmospheric scattering effect on spatial resolution of imaging systems , 1997 .
[10] K. Carder,et al. Monte Carlo simulation of the atmospheric point-spread function with an application to correction for the adjacency effect. , 1995, Applied optics.
[11] W. Steen. Absorption and Scattering of Light by Small Particles , 1999 .
[12] Samy Metari,et al. A New Convolution Kernel for Atmospheric Point Spread Function Applied to Computer Vision , 2007, 2007 IEEE 11th International Conference on Computer Vision.
[13] I. Dror,et al. Experimental comparison of turbulence modulation transfer function and aerosol modulation transfer function through the open atmosphere , 1995 .
[14] M. D. Roberts,et al. The role of atmospheric multiple scattering in the transmission of fluorescence light from extensive air showers , 2005 .
[15] Norman S. Kopeika,et al. Causes of atmospheric blur: comment on Atmospheric scattering effect on spatial resolution of imaging systems , 1998 .
[16] Pierre Auger Collaboration,et al. Description of atmospheric conditions at the Pierre Auger Observatory using meteorological measurements and models , 2012, 1208.5417.
[17] P. G. Isar,et al. The Pierre Auger Observatory: Contributions to the 34th International Cosmic Ray Conference (ICRC 2015) , 2015, 1509.03732.
[18] S. Dagoret-Campagne,et al. Ramsauer approach to Mie scattering of light on spherical particles , 2009, 0903.2978.
[19] P. Barber. Absorption and scattering of light by small particles , 1984 .
[20] Pierre Auger Collaboration,et al. Atmospheric aerosols at the Pierre Auger Observatory and environmental implications , 2012, The European Physical Journal Plus.
[21] Akira Ishimaru,et al. Wave propagation and scattering in random media , 1997 .
[22] W. Wiscombe. Improved Mie scattering algorithms. , 1980, Applied optics.
[23] K. Louedec. Atmospheric Monitoring at the Pierre Auger Observatory - Status and Update , 2011 .
[24] P Bruscaglioni,et al. Method of measuring the phase function of a turbid medium in the small scattering angle range. , 1989, Applied optics.
[25] H. V. Hulst. Light Scattering by Small Particles , 1957 .
[26] Luc R. Bissonnette,et al. Imaging through fog and rain , 1992 .
[27] D. Toublanc,et al. Henyey-Greenstein and Mie phase functions in Monte Carlo radiative transfer computations. , 1996, Applied optics.
[28] Norman S. Kopeika,et al. Imaging through the atmosphere: practical instrumentation-based theory and verification of aerosol modulation transfer function , 1993 .
[29] L. C. Henyey,et al. Diffuse radiation in the Galaxy , 1940 .
[30] A. Bucholtz,et al. Rayleigh-scattering calculations for the terrestrial atmosphere. , 1995, Applied optics.