Triply-heavy/strange baryons with Cornell potential on a quantum computer

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Main Authors: de Arenaza, Nicolás Martínez, Gálvez-Viruet, Juan J., Llanes-Estrada, Felipe J.
Format: Preprint
Published: 2024
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author de Arenaza, Nicolás Martínez
Gálvez-Viruet, Juan J.
Llanes-Estrada, Felipe J.
author_facet de Arenaza, Nicolás Martínez
Gálvez-Viruet, Juan J.
Llanes-Estrada, Felipe J.
contents We present a computation of triply-heavy baryons on a quantum computer, employing the Cornell quark model in line with the earlier quarkonium work of Gallimore and Liao. These baryons are some of the most interesting Standard Model particles which have not yet been detected, as they bear on the short range (colour) behaviour of the nuclear force. The spectrum here obtained is compatible with predictions from earlier works, with our uncertainty dominated by traditional few-body approximations (size of the variational basis, center of mass recoil, parameter estimation...) and not by the statistical error from the quantum computer (deployed here as a small diagonalizer), which turns out to be negligible respect to the other sources of uncertainty, at least in the present unsophisticated few-body approximation. We have also substituted one or more heavy quarks for strange quarks.
format Preprint
id arxiv_https___arxiv_org_abs_2407_07232
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Triply-heavy/strange baryons with Cornell potential on a quantum computer
de Arenaza, Nicolás Martínez
Gálvez-Viruet, Juan J.
Llanes-Estrada, Felipe J.
Nuclear Theory
We present a computation of triply-heavy baryons on a quantum computer, employing the Cornell quark model in line with the earlier quarkonium work of Gallimore and Liao. These baryons are some of the most interesting Standard Model particles which have not yet been detected, as they bear on the short range (colour) behaviour of the nuclear force. The spectrum here obtained is compatible with predictions from earlier works, with our uncertainty dominated by traditional few-body approximations (size of the variational basis, center of mass recoil, parameter estimation...) and not by the statistical error from the quantum computer (deployed here as a small diagonalizer), which turns out to be negligible respect to the other sources of uncertainty, at least in the present unsophisticated few-body approximation. We have also substituted one or more heavy quarks for strange quarks.
title Triply-heavy/strange baryons with Cornell potential on a quantum computer
topic Nuclear Theory
url https://arxiv.org/abs/2407.07232