Holographic Gaussian Boson Sampling with Matrix Product States on 3D cQED Processors

Fuente: arXiv
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Bibliographic Details
Main Authors: Lyu, Ningyi, Bergold, Paul, Soley, Micheline B., Wang, Chen, Batista, Victor S.
Format: Preprint
Published: 2024
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author Lyu, Ningyi
Bergold, Paul
Soley, Micheline B.
Wang, Chen
Batista, Victor S.
author_facet Lyu, Ningyi
Bergold, Paul
Soley, Micheline B.
Wang, Chen
Batista, Victor S.
contents We introduce quantum circuits for simulations of multi-mode state-vectors on 3D cQED processors, using matrix product state representations. The circuits are demonstrated as applied to simulations of molecular docking based on holographic Gaussian boson sampling, as illustrated for binding of a thiol-containing aryl sulfonamide ligand to the tumor necrosis factor-$α$ converting enzyme receptor. We show that cQED devices with a modest number of modes could be employed to simulate multimode systems by re-purposing working modes through measurement and re-initialization. We anticipate a wide range of GBS applications could be implemented on compact 3D cQED processors analogously, using the holographic approach. Simulations on qubit-based quantum computers could be implemented analogously, using circuits that represent continuous variables in terms of truncated expansions of Fock states.
format Preprint
id arxiv_https___arxiv_org_abs_2403_16810
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Holographic Gaussian Boson Sampling with Matrix Product States on 3D cQED Processors
Lyu, Ningyi
Bergold, Paul
Soley, Micheline B.
Wang, Chen
Batista, Victor S.
Quantum Physics
We introduce quantum circuits for simulations of multi-mode state-vectors on 3D cQED processors, using matrix product state representations. The circuits are demonstrated as applied to simulations of molecular docking based on holographic Gaussian boson sampling, as illustrated for binding of a thiol-containing aryl sulfonamide ligand to the tumor necrosis factor-$α$ converting enzyme receptor. We show that cQED devices with a modest number of modes could be employed to simulate multimode systems by re-purposing working modes through measurement and re-initialization. We anticipate a wide range of GBS applications could be implemented on compact 3D cQED processors analogously, using the holographic approach. Simulations on qubit-based quantum computers could be implemented analogously, using circuits that represent continuous variables in terms of truncated expansions of Fock states.
title Holographic Gaussian Boson Sampling with Matrix Product States on 3D cQED Processors
topic Quantum Physics
url https://arxiv.org/abs/2403.16810