arXiv · 1911.11475
Closed Quantum Black-Scholes: Quantum Drift and the Heisenberg Equation of Motion
Abstract
In this article we model a financial derivative price as an observable on the market state function. We apply geometric techniques to integrating the Heisenberg Equation of Motion. We illustrate how the non-commutative nature of the model introduces quantum interference effects that can act as either a drag or a boost on the resulting return. The ultimate objective is to investigate the nature of quantum drift in the Accardi-Boukas quantum Black-Scholes framework which involves modelling the financial market as a quantum observable, and introduces randomness through the Hudson-Parthasarathy quantum stochastic calculus. In particular we aim to differentiate randomness that is introduced through external noise (quantum stochastic calculus) and randomness that is fundamental to a quantum system (Heisenberg Equation of Motion).
Explore related subjects
Keep this discovery
Will Hicks. 2019-11-26. Closed Quantum Black-Scholes: Quantum Drift and the Heisenberg Equation of Motion. https://arxiv.org/abs/1911.11475
Cite the original work for its findings. Save a collection to share your selection of sources.