English

Sharp Large Deviations and Gibbs Conditioning for Threshold Models in Portfolio Credit Risk

Probability 2025-10-21 v2 Statistics Theory Mathematical Finance Portfolio Management Risk Management Statistics Theory

Abstract

We obtain sharp large deviation estimates for exceedance probabilities in dependent triangular array threshold models with a diverging number of latent factors. The prefactors quantify how latent-factor dependence and tail geometry enter at leading order, yielding three regimes: Gaussian or exponential-power tails produce polylogarithmic refinements of the Bahadur-Rao n1/2n^{-1/2} law; regularly varying tails yield index-driven polynomial scaling; and bounded-support (endpoint) cases lead to an n3/2n^{-3/2} prefactor. We derive these results through Laplace-Olver asymptotics for exponential integrals and conditional Bahadur-Rao estimates for the triangular arrays. Using these estimates, we establish a Gibbs conditioning principle in total variation: conditioned on a large exceedance event, the default indicators become asymptotically i.i.d., and the loss-given-default distribution is exponentially tilted (with the boundary case handled by an endpoint analysis). As illustrations, we obtain second-order approximations for Value-at-Risk and Expected Shortfall, clarifying when portfolios operate in the genuine large-deviation regime. The results provide a transferable set of techniques-localization, curvature, and tilt identification-for sharp rare-event analysis in dependent threshold systems.

Keywords

Cite

@article{arxiv.2509.19151,
  title  = {Sharp Large Deviations and Gibbs Conditioning for Threshold Models in Portfolio Credit Risk},
  author = {Fengnan Deng and Anand N. Vidyashankar and Jeffrey F. Collamore},
  journal= {arXiv preprint arXiv:2509.19151},
  year   = {2025}
}
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