Exploring lattice supersymmetry with variational quantum deflation

Fuente: arXiv
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Auteurs principaux: Schaich, David, Culver, Christopher
Format: Preprint
Publié: 2024
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author Schaich, David
Culver, Christopher
author_facet Schaich, David
Culver, Christopher
contents Lattice studies of spontaneous supersymmetry breaking suffer from a sign problem that in principle can be evaded through novel methods enabled by quantum computing. Focusing on lower-dimensional lattice systems with more modest resource requirements, in particular the N=1 Wess--Zumino model in 1+1 dimensions, we are exploring ways quantum computing could be used to study spontaneous supersymmetry breaking. A particularly promising recent development is to apply the variational quantum deflation algorithm, which generalizes the variational quantum eigensolver so as to resolve multiple low-energy states.
format Preprint
id arxiv_https___arxiv_org_abs_2410_11514
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Exploring lattice supersymmetry with variational quantum deflation
Schaich, David
Culver, Christopher
High Energy Physics - Lattice
Quantum Physics
Lattice studies of spontaneous supersymmetry breaking suffer from a sign problem that in principle can be evaded through novel methods enabled by quantum computing. Focusing on lower-dimensional lattice systems with more modest resource requirements, in particular the N=1 Wess--Zumino model in 1+1 dimensions, we are exploring ways quantum computing could be used to study spontaneous supersymmetry breaking. A particularly promising recent development is to apply the variational quantum deflation algorithm, which generalizes the variational quantum eigensolver so as to resolve multiple low-energy states.
title Exploring lattice supersymmetry with variational quantum deflation
topic High Energy Physics - Lattice
Quantum Physics
url https://arxiv.org/abs/2410.11514