Quantum simulation of gauge theory via orbifold lattice

被引:0
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作者
Alexander J. Buser
Hrant Gharibyan
Masanori Hanada
Masazumi Honda
Junyu Liu
机构
[1] California Institute of Technology,Walter Burke Institute for Theoretical Physics and Institute for Quantum Information and Matter
[2] University of Surrey,Department of Mathematics
[3] Kyoto University,Yukawa Institute for Theoretical Physics
关键词
Lattice Quantum Field Theory; Matrix Models;
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摘要
We propose a new framework for simulating U(k) Yang-Mills theory on a universal quantum computer. This construction uses the orbifold lattice formulation proposed by Kaplan, Katz, and Unsal, who originally applied it to supersymmetric gauge theories. Our proposed approach yields a novel perspective on quantum simulation of quantum field theories, carrying certain advantages over the usual Kogut-Susskind formulation. We discuss the application of our constructions to computing static properties and real-time dynamics of Yang-Mills theories, from glueball measurements to AdS/CFT, making use of a variety of quantum information techniques including qubitization, quantum signal processing, Jordan-Lee-Preskill bounds, and shadow tomography. The generalizations to certain supersymmetric Yang-Mills theories appear to be straightforward, providing a path towards the quantum simulation of quantum gravity via holographic duality.
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