English

New solvable stochastic volatility models for pricing volatility derivatives

Pricing of Securities 2012-07-03 v2

Abstract

Classical solvable stochastic volatility models (SVM) use a CEV process for instantaneous variance where the CEV parameter γ\gamma takes just few values: 0 - the Ornstein-Uhlenbeck process, 1/2 - the Heston (or square root) process, 1- GARCH, and 3/2 - the 3/2 model. Some other models were discovered in \cite{Labordere2009} by making connection between stochastic volatility and solvable diffusion processes in quantum mechanics. In particular, he used to build a bridge between solvable (super)potentials (the Natanzon (super)potentials, which allow reduction of a Schr\"{o}dinger equation to a Gauss confluent hypergeometric equation) and existing SVM. In this paper we discuss another approach to extend the class of solvable SVM in terms of hypergeometric functions. Thus obtained new models could be useful for pricing volatility derivatives (variance and volatility swaps, moment swaps).

Keywords

Cite

@article{arxiv.1205.3550,
  title  = {New solvable stochastic volatility models for pricing volatility derivatives},
  author = {Andrey Itkin},
  journal= {arXiv preprint arXiv:1205.3550},
  year   = {2012}
}

Comments

28 pages, 3 figures, first presented at Global Derivatives & Risk, Paris 2011

R2 v1 2026-06-21T21:04:47.193Z