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Bibliographic Details
Main Authors: Bochkin, Georgii A., Doronin, Sergei I., Fel'dman, Edward B., Kuznetsova, Elena I., Lazarev, Ilia D., Pechen, Alexander, Zenchuk, Alexander I.
Format: Preprint
Published: 2024
Subjects:
Online Access:https://arxiv.org/abs/2407.16460
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author Bochkin, Georgii A.
Doronin, Sergei I.
Fel'dman, Edward B.
Kuznetsova, Elena I.
Lazarev, Ilia D.
Pechen, Alexander
Zenchuk, Alexander I.
author_facet Bochkin, Georgii A.
Doronin, Sergei I.
Fel'dman, Edward B.
Kuznetsova, Elena I.
Lazarev, Ilia D.
Pechen, Alexander
Zenchuk, Alexander I.
contents We consider the remote state restoring and perfect transfer of the zero-order coherence matrix (PTZ) in a spin system governed by the XXZ-Hamiltonian conserving the excitation number. The restoring tool is represented by several nonzero Larmor frequencies in the Hamiltonian. To simplify the analysis we use two approximating models including either step-wise or pulse-type time-dependence of the Larmor frequencies. Restoring in spin chains with up to 20 nodes is studied. Studying PTZ, we consider the zigzag and rectangular configurations and optimize the transfer of the 0-order coherence matrix using geometrical parameters of the communication line as well as the special unitary transformation of the extended receiver. Overall observation is that XXZ-chains require longer time for state transfer than XX-chains, which is confirmed by the analytical study of the evolution under the nearest-neighbor approximation. We demonstrate the exponential increase of the state-transfer time with the spin chain length.
format Preprint
id arxiv_https___arxiv_org_abs_2407_16460
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Some Aspects of Remote State Restoring in State Transfer Governed by XXZ-Hamiltonian
Bochkin, Georgii A.
Doronin, Sergei I.
Fel'dman, Edward B.
Kuznetsova, Elena I.
Lazarev, Ilia D.
Pechen, Alexander
Zenchuk, Alexander I.
Quantum Physics
We consider the remote state restoring and perfect transfer of the zero-order coherence matrix (PTZ) in a spin system governed by the XXZ-Hamiltonian conserving the excitation number. The restoring tool is represented by several nonzero Larmor frequencies in the Hamiltonian. To simplify the analysis we use two approximating models including either step-wise or pulse-type time-dependence of the Larmor frequencies. Restoring in spin chains with up to 20 nodes is studied. Studying PTZ, we consider the zigzag and rectangular configurations and optimize the transfer of the 0-order coherence matrix using geometrical parameters of the communication line as well as the special unitary transformation of the extended receiver. Overall observation is that XXZ-chains require longer time for state transfer than XX-chains, which is confirmed by the analytical study of the evolution under the nearest-neighbor approximation. We demonstrate the exponential increase of the state-transfer time with the spin chain length.
title Some Aspects of Remote State Restoring in State Transfer Governed by XXZ-Hamiltonian
topic Quantum Physics
url https://arxiv.org/abs/2407.16460