Identification of a natural fieldlike entanglement resource in trapped-ion chains

Fuente: arXiv
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Main Authors: Klco, Natalie, Beck, D. H.
Format: Preprint
Published: 2023
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author Klco, Natalie
Beck, D. H.
author_facet Klco, Natalie
Beck, D. H.
contents The electromagnetic trapping of ion chains can be regarded as a process of non-trivial entangled quantum state preparation within Hilbert spaces of the local axial motional modes. To begin uncovering properties of this entanglement resource produced as a byproduct of conventional ion-trap quantum information processing, the quantum continuous-variable formalism is herein utilized to focus on the leading-order entangled ground state of local motional modes in the presence of a quadratic trapping potential. The decay of entanglement between disjoint subsets of local modes is found to exhibit features of entanglement structure and responses to partial measurement reminiscent of the free massless scalar field vacuum. With significant fidelities between the two, even for large system sizes, a framework is established for initializing quantum field simulations via "imaging" extended entangled states from natural sources, rather than building correlations through deep circuits of few-body entangling operators. By calculating probabilities in discrete Fock subspaces of the local motional modes, considerations are presented for locally transferring these pre-distributed entanglement resources to the qudits of ion internal energy levels, improving this procedure's anticipated experimental viability.
format Preprint
id arxiv_https___arxiv_org_abs_2311_08842
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Identification of a natural fieldlike entanglement resource in trapped-ion chains
Klco, Natalie
Beck, D. H.
Quantum Physics
High Energy Physics - Lattice
Nuclear Theory
The electromagnetic trapping of ion chains can be regarded as a process of non-trivial entangled quantum state preparation within Hilbert spaces of the local axial motional modes. To begin uncovering properties of this entanglement resource produced as a byproduct of conventional ion-trap quantum information processing, the quantum continuous-variable formalism is herein utilized to focus on the leading-order entangled ground state of local motional modes in the presence of a quadratic trapping potential. The decay of entanglement between disjoint subsets of local modes is found to exhibit features of entanglement structure and responses to partial measurement reminiscent of the free massless scalar field vacuum. With significant fidelities between the two, even for large system sizes, a framework is established for initializing quantum field simulations via "imaging" extended entangled states from natural sources, rather than building correlations through deep circuits of few-body entangling operators. By calculating probabilities in discrete Fock subspaces of the local motional modes, considerations are presented for locally transferring these pre-distributed entanglement resources to the qudits of ion internal energy levels, improving this procedure's anticipated experimental viability.
title Identification of a natural fieldlike entanglement resource in trapped-ion chains
topic Quantum Physics
High Energy Physics - Lattice
Nuclear Theory
url https://arxiv.org/abs/2311.08842