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Quantum Simulations Based on Parameterized Circuit of an Antisymmetric Matrix

Quantum Physics 2025-05-05 v1

Abstract

Given an antisymmetric matrix AA or the unitary matrix UA=eAU_A = e^A-or an oracle whose answers can be used to infer information about AA-in this paper we present a parameterized circuit framework that can be used to approximate a quantum circuit for eAe^A. We design the circuit based on a uniform antisymmetric matrix with {±1}\{\pm 1\} elements, which has an eigenbasis that is a phase-shifted version of the quantum Fourier transform, and its eigenspectrum can be constructed by using rotation ZZ gates. Therefore, we show that it can be used to directly estimate eAe^A and its quantum circuit representation. Since the circuit is based on O(n2)O(n^2) quantum gates, which form the eigendecomposition of eAe^A with separate building blocks, it can also be used to approximate the eigenvalues of AA.

Keywords

Cite

@article{arxiv.2505.01023,
  title  = {Quantum Simulations Based on Parameterized Circuit of an Antisymmetric Matrix},
  author = {Ammar Daskin},
  journal= {arXiv preprint arXiv:2505.01023},
  year   = {2025}
}

Comments

simulations can be accessed on the link: https://github.com/adaskin/pqc-antisymmetric-matrix.git

R2 v1 2026-06-28T23:18:50.876Z