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Battaglia, A. and S. Mantovani (2005), Forward Monte Carlo computations of fully polarized microwave radiation in non-isotropic media, J. Quant. Spectrosc. Radiat. Transfer, 95, 285–308.
Cahalan, R. F., L. Oreopoulos, A. Marshak, K. F. Evans, A. B. Davis, R. Pincus, K. H. Yetzer, B. Mayer, R. Davies, T. P. Ackerman, H. W. Barker, E. E. Clothiaux, R. G. Ellingson, M. J. Garay, E. K. Assianov, S. Kinne, A. Macke, W. O'Hirok, P. T. Partain, S. M. Prigarin, A. N. Rublev, G. L. Stephens, F. Szczap, E. E. Takara, T. Várnai, G. Wen, and T. B. Zhuravleva (2005), The I3RC. Bringing Together the Most Advanced Radiative Transfer Tools for Cloudy Atmospheres, Bull. Amer. Met. Soc., 86(9), 1275–1293, doi:10.1175/BAMS-86-9-1275.
Emde, C., R. Buras, and B. Mayer (2011), ALIS: An efficient method to compute high spectral resolution polarized solar radiances using the Monte Carlo approach, J. Quant. Spectrosc. Radiat. Transfer, 112(10), 1622–1631, doi:10.1016/j.jqsrt.2011.03.018.
Ma, Q. and R. H. Tipping (2000), The density matrix of H2O-N2 in the coordinate representation: A Monte Carlo calculation on the far-wing line shape, J. Chem. Phys., 112(2), 574–584.
Pincus, R. and K. F. Evans (2009), Computational Cost and Accuracy in Calculating Three-Dimensional Radiative Transfer: Results for New Implementations of Monte Carlo and SHDOM, J. Atmos. Sci., 66(10), 3131–3146, doi:10.1175/2009JAS3137.1.
Posselt, D. J., T. S. L'Ecuyer, and G. L. Stephens (2008), Exploring the error characteristics of thin ice cloud property retrievals using a Markov chain Monte Carlo algorithm, J. Geophys. Res., 113, D24206, doi:10.1029/2008JD010832.
Roberti, L. and C. Kummerow (1999), Monte Carlo calculations of polarized microwave radiation emerging from cloud structures, J. Geophys. Res., 104(D2), 2093–2104.
Sandler, P., J. O. Jung, M. M. Szczesniak, and V. Buch (1994), The compex of N2 with H2O, D2O, and HDO: A combined ab initio and diffusion Monte Carlo study, J. Chem. Phys., 101(2), 1378–1391.