
arXiv: cond-mat/0401192
handle: 11449/23944
There is a well developed framework, the Black-Scholes theory, for the pricing of contracts based on the future prices of certain assets, called options. This theory assumes that the probability distribution of the returns of the underlying asset is a gaussian distribution. However, it is observed in the market that this hypothesis is flawed, leading to the introduction of a fudge factor, the so-called volatility smile. Therefore, it would be interesting to explore extensions of the Black-Scholes theory to non-gaussian distributions. In this contribution we provide an explicit formula for the price of an option when the distributions of the returns of the underlying asset is parametrized by an Edgeworth expansion, which allows for the introduction of higher independent moments of the probability distribution, namely skewness and kurtosis. We test our formula with options in the brazilian and american markets, showing that the volatility smile can be reduced. We also check whether our approach leads to more efficient hedging strategies of these instruments.
9 pages, 3 figure. Contribution to the International Workshop on Trends and Perspectives on Extensive and Non-Extensive Statistical Mechanics, November 19-21, 2003, Angra dos Reis, Brazil
non-gaussian distribution, Condensed Matter (cond-mat), FOS: Physical sciences, Condensed Matter, option pricing, 332
non-gaussian distribution, Condensed Matter (cond-mat), FOS: Physical sciences, Condensed Matter, option pricing, 332
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