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Please use this identifier to cite or link to this item: http://repository.iitr.ac.in/handle/123456789/24582
Title: Quantum simulation of nuclear Hamiltonian with a generalized transformation for Gray code encoding
Authors: Siwach P.
Arumugam, Paramasivan
Published in: Physical Review C
Abstract: We present the quantum simulation of the deuteron to calculate its binding energy using the variational quantum eigensolver, which is based on a hybrid quantum-classical approach. Apart from a commonly used Hamiltonian derived from pionless effective field theory, we consider the interaction which can be easily studied with conventional classical methods but the corresponding operator leading to nonzero off-tridiagonal matrix elements. To map the many-body basis states on the qubit states, three encodings are explored, namely, one-hot, Bravyi-Kitaev, and the Gray code. We perform a generalized transformation for many-body operators in Gray code encoding, and simulate the Hamiltonians with nonzero off-tridiagonal matrix elements. Furthermore, the analyses of the relative efficiency of all encodings and corresponding transformations are carried out using the noise model of a real IBM quantum device. We demonstrate that the Gray code is more efficient for a large basis, irrespective of the form of potential and the presence of hardware noise. © 2021 American Physical Society.
Citation: Physical Review C, 104(3)
URI: https://doi.org/10.1103/PhysRevC.104.034301
http://repository.iitr.ac.in/handle/123456789/24582
Issue Date: 2021
Publisher: American Physical Society
ISSN: 24699985
Author Scopus IDs: 57219913052
16068034900
Author Affiliations: Siwach, P., Department of Physics, Indian Institute of Technology Roorkee, Roorkee, Uttarakhand, 247667, India
Arumugam, P., Department of Physics, Indian Institute of Technology Roorkee, Roorkee, Uttarakhand, 247667, India
Corresponding Author: Arumugam, P.; Department of Physics, India; email: arumugam@ph.iitr.ac.in
Appears in Collections:Journal Publications [PH]

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