English

Quantum unary approach to option pricing

Quantum Physics 2021-03-24 v4

Abstract

We present a quantum algorithm for European option pricing in finance, where the key idea is to work in the unary representation of the asset value. The algorithm needs novel circuitry and is divided in three parts: first, the amplitude distribution corresponding to the asset value at maturity is generated using a low depth circuit; second, the computation of the expected return is computed with simple controlled gates; and third, standard Amplitude Estimation is used to gain quantum advantage. On the positive side, unary representation remarkably simplifies the structure and depth of the quantum circuit. Amplitude distributions uses quantum superposition to bypass the role of classical Monte Carlo simulation. The unary representation also provides a post-selection consistency check that allows for a substantial mitigation in the error of the computation. On the negative side, unary representation requires linearly many qubits to represent a target probability distribution, as compared to the logarithmic scaling of binary algorithms. We compare the performance of both unary vs. binary option pricing algorithms using error maps, and find that unary representation may bring a relevant advantage in practice for near-term devices.

Keywords

Cite

@article{arxiv.1912.01618,
  title  = {Quantum unary approach to option pricing},
  author = {Sergi Ramos-Calderer and Adrián Pérez-Salinas and Diego García-Martín and Carlos Bravo-Prieto and Jorge Cortada and Jordi Planagumà and José I. Latorre},
  journal= {arXiv preprint arXiv:1912.01618},
  year   = {2021}
}

Comments

14 (main) + 10 (appendix) pages, 22 figures. Final peer-reviewed version, published in PRA. All suggestions from the referees have been considered. We thank the referees and the journal for all the work

R2 v1 2026-06-23T12:34:48.856Z