Quantum Simulations Based on Parameterized Circuit of an Antisymmetric Matrix
Abstract
Given an antisymmetric matrix or the unitary matrix -or an oracle whose answers can be used to infer information about -in this paper we present a parameterized circuit framework that can be used to approximate a quantum circuit for . We design the circuit based on a uniform antisymmetric matrix with 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 gates. Therefore, we show that it can be used to directly estimate and its quantum circuit representation. Since the circuit is based on quantum gates, which form the eigendecomposition of with separate building blocks, it can also be used to approximate the eigenvalues of .
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