arXiv · 2212.11388
Toward Exploring Phase Diagrams of Gauge Theories on Quantum Computers with Thermal Pure Quantum States
Abstract
Aiming at evading the notorious sign problem in classical Monte-Carlo approaches to lattice quantum chromodynamics, we present an approach for quantum computing finite-temperature lattice gauge theories at non-zero density. Based on the thermal pure-quantum-state formalism of statistical mechanics when extended to gauge-theory systems, our approach allows for sign-problem-free quantum computations of thermal expectation values and non-equal time correlation functions. By taking a simple lattice gauge theory for which classical benchmarks are possible, namely $\mathbb{Z}_2$ lattice gauge theory in 1+1 dimensions at finite chemical potential, we discuss resource requirements and robustness to algorithmic and hardware imperfections for near-term quantum-hardware realizations.
Explore related subjects
Keep this discovery
Zohreh Davoudi, Niklas Mueller, Connor Powers. 2022-12-21. Toward Exploring Phase Diagrams of Gauge Theories on Quantum Computers with Thermal Pure Quantum States. https://arxiv.org/abs/2212.11388
Cite the original work for its findings. Save a collection to share your selection of sources.