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Stochastic Calculus Of Variations For Jump Processes 1st Edition Yasushi Ishikawa

  • SKU: BELL-50378324
Stochastic Calculus Of Variations For Jump Processes 1st Edition Yasushi Ishikawa
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Stochastic Calculus Of Variations For Jump Processes 1st Edition Yasushi Ishikawa instant download after payment.

Publisher: De Gruyter, Walter de Gruyter GmbH
File Extension: PDF
File size: 1.91 MB
Pages: 276
Author: Yasushi Ishikawa
ISBN: 9783110282009, 9783110281804, 3110282003, 3110281805
Language: English
Year: 2013
Edition: 1
Volume: 54

Product desciption

Stochastic Calculus Of Variations For Jump Processes 1st Edition Yasushi Ishikawa by Yasushi Ishikawa 9783110282009, 9783110281804, 3110282003, 3110281805 instant download after payment.

Stochastic Calculus of Variations for Jump Processes

Main subject categories: • Continuous-time Markov processes on general state spaces • Transition functions, generators and resolvents • Processes with independent increments; Lévy processes • Probability theory and stochastic processes • Stochastic calculus of variations and the Malliavin calculus

This monograph is a concise introduction to the stochastic calculus of variations (also known as Malliavin calculus) for processes with jumps. It is written for researchers and graduate students who are interested in Malliavin calculus for jump processes. In this book processes "with jumps" includes both pure jump processes and jump-diffusions. The author provides many results on this topic in a self-contained way; this also applies to stochastic differential equations (SDEs) "with jumps".

The book also contains some applications of the stochastic calculus for processes with jumps to the control theory and mathematical finance. Namely, asymptotic expansions functionals related with financial assets of jump-diffusion are provided based on the theory of asymptotic expansion on the Wiener–Poisson space. Solving the Hamilton–Jacobi–Bellman (HJB) equation of integro-differential type is related with solving the classical Merton problem and the Ramsey theory.


The field of jump processes is nowadays quite wide-ranging, from the Lévy processes to SDEs with jumps. Recent developments in stochastic analysis have enabled us to express various results in a compact form. Up to now, these topics were rarely discussed in a monograph.

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