强耦合极限下格子 QCD 的量子计算资源

Michael Fromm, Lucas Katschke, Owe Philipsen, Wolfgang Unger
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引用次数: 0

摘要

我们考虑了无质量交错夸克的格子 QCD 的强耦合极限,并研究了量子模拟其哈密顿形式理论的资源需求。特别是,除了用量子比特进行计算的标准模型之外,我们还考虑了将理论映射到量子比特 $(d>2)$ 和量子模型(分别用于捕获离子系统和光子设备)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Quantum computational resources for lattice QCD in the strong-coupling limit
We consider the strong coupling limit of lattice QCD with massless staggered quarks and study the resource requirements for quantum simulating the theory in its Hamiltonian formulation. The bosonic Hilbert space of the color-singlet degrees of freedom grows quickly with the number of quark flavors, making it a suitable testing ground for resource considerations across different platforms. In particular, in addition to the standard model of computation with qubits, we consider mapping the theory to qudits $(d>2)$ and qumodes, as used on trapped-ion systems and photonic devices, respectively.
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