Interacting particle systems for the computation of rare credit portfolio losses
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[1] Kay Giesecke,et al. Exact and Efficient Simulation of Correlated Defaults , 2010, SIAM J. Financial Math..
[2] Jean-Pierre Fouque,et al. Modeling correlated defaults: first passage model under stochastic volatility , 2008 .
[3] Chunsheng Zhou,et al. An Analysis of Default Correlations and Multiple Defaults , 2001 .
[4] Paul Glasserman,et al. Importance Sampling for Portfolio Credit Risk , 2005, Manag. Sci..
[5] Sachin Jain,et al. Efficient Importance Sampling for Reduced Form Models in Credit Risk , 2006, Proceedings of the 2006 Winter Simulation Conference.
[6] STÉPHANE CRÉPEY. IMPORTANCE SAMPLING AND INTERACTING PARTICLE SYSTEMS FOR THE ESTIMATION OF MARKOVIAN CREDIT PORTFOLIOS LOSS DISTRIBUTION , 2009 .
[7] Douglas W. Vestal. Interacting particle systems for pricing credit derivatives , 2008 .
[8] Thembisile. Mkize. Stochastic volatility effects on defaultable bonds. , 2009 .
[9] Paul Glasserman,et al. Monte Carlo Methods in Financial Engineering , 2003 .
[10] P. Glasserman,et al. A Continuity Correction for Discrete Barrier Options , 1997 .
[11] R. Laubenfels,et al. Feynman–Kac Formulae: Genealogical and Interacting Particle Systems with Applications , 2005 .
[12] P. Moral. Feynman-Kac Formulae: Genealogical and Interacting Particle Systems with Applications , 2004 .
[13] P. Moral,et al. Genealogical particle analysis of rare events , 2005, math/0602525.