Toward simulating superstring/M-theory on a quantum computer

被引:24
|
作者
Gharibyan, Hrant [1 ,2 ]
Hanada, Masanori [3 ,4 ]
Honda, Masazumi [4 ]
Liu, Junyu [1 ,2 ]
机构
[1] CALTECH, Walter Burke Inst Theoret Phys, Pasadena, CA 91125 USA
[2] CALTECH, Inst Quantum Informat & Matter, Pasadena, CA 91125 USA
[3] Univ Surrey, Dept Math, Guildford GU2 7XH, Surrey, England
[4] Kyoto Univ, Yukawa Inst Theoret Phys, Sakyo Ku, Kyoto 6068502, Japan
关键词
Black Holes in String Theory; M-Theory; M(atrix) Theories; SUPER-YANG-MILLS; LARGE N REDUCTION; HAMILTONIAN SIMULATION; LATTICE; MODEL; GENERATION; MECHANICS; PLANAR; STATES; LIMIT;
D O I
10.1007/JHEP07(2021)140
中图分类号
O412 [相对论、场论]; O572.2 [粒子物理学];
学科分类号
摘要
We present a novel framework for simulating matrix models on a quantum computer. Supersymmetric matrix models have natural applications to superstring/M-theory and gravitational physics, in an appropriate limit of parameters. Furthermore, for certain states in the Berenstein-Maldacena-Nastase (BMN) matrix model, several supersymmetric quantum field theories dual to superstring/M-theory can be realized on a quantum device. Our prescription consists of four steps: regularization of the Hilbert space, adiabatic state preparation, simulation of real-time dynamics, and measurements. Regularization is performed for the BMN matrix model with the introduction of energy cut-off via the truncation in the Fock space. We use the Wan-Kim algorithm for fast digital adiabatic state preparation to prepare the low-energy eigenstates of this model as well as thermofield double state. Then, we provide an explicit construction for simulating real-time dynamics utilizing techniques of block-encoding, qubitization, and quantum signal processing. Lastly, we present a set of measurements and experiments that can be carried out on a quantum computer to further our understanding of superstring/M-theory beyond analytic results.
引用
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页数:56
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