Heavy Baryons in a Pion Mean-Field Approach: A Brief Review

We review in this paper a series of recent works on properties of singly heavy baryons, based on a pion mean-field approach. In the limit of an infinitely heavy-quark mass, the heavy quark inside a heavy baryon can be regarded as a static color source. In this limit, a heavy baryon can be viewed as...

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Published inJournal of the Korean Physical Society Vol. 73; no. 2; pp. 165 - 178
Main Author Kim, Hyun-Chul
Format Journal Article
LanguageEnglish
Published Seoul The Korean Physical Society 01.07.2018
Springer Nature B.V
한국물리학회
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ISSN0374-4884
1976-8524
DOI10.3938/jkps.73.165

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Abstract We review in this paper a series of recent works on properties of singly heavy baryons, based on a pion mean-field approach. In the limit of an infinitely heavy-quark mass, the heavy quark inside a heavy baryon can be regarded as a static color source. In this limit, a heavy baryon can be viewed as N c − 1 valence quarks bound by the pion mean fields which are created self-consistently by the presence of the N c valence quarks. We show that this mean-field approach can successfully describe the masses and the magnetic moments of the lowest-lying singly heavy baryons, using all the parameters fixed in the light-baryon sector except for the hyperfine spin-spin interactions. We also review a recent work on identifying the newly found excited Ω c baryons reported by the LHCb Collaboration. We discuss possible scenarios to identify them. Finally, we give a future perspective on this pion mean-field approach.
AbstractList We review in this paper a series of recent works on properties of singly heavy baryons, based on a pion mean-field approach. In the limit of an infinitely heavy-quark mass, the heavy quark inside a heavy baryon can be regarded as a static color source. In this limit, a heavy baryon can be viewed as Nc − 1 valence quarks bound by the pion mean fields which are created self-consistently by the presence of the Nc valence quarks. We show that this mean-field approach can successfully describe the masses and the magnetic moments of the lowest-lying singly heavy baryons, using all the parameters fixed in the light-baryon sector except for the hyperfine spin-spin interactions. We also review a recent work on identifying the newly found excited Ωc baryons reported by the LHCb Collaboration. We discuss possible scenarios to identify them. Finally, we give a future perspective on this pion mean-field approach.
We review in this paper a series of recent works on properties of singly heavy baryons, based on a pion mean-field approach. In the limit of an infinitely heavy-quark mass, the heavy quark inside a heavy baryon can be regarded as a static color source. In this limit, a heavy baryon can be viewed as Nc − 1 valence quarks bound by the pion mean fields which are created self-consistently by the presence of the Nc valence quarks. We show that this mean-field approach can successfully describe the masses and the magnetic moments of the lowest-lying singly heavy baryons, using all the parameters fixed in the light-baryon sector except for the hyperfine spin-spin interactions. We also review a recent work on identifying the newly found excited Ωc baryons reported by the LHCb Collaboration. We discuss possible scenarios to identify them. Finally, we give a future perspective on this pion mean-field approach. KCI Citation Count: 3
We review in this paper a series of recent works on properties of singly heavy baryons, based on a pion mean-field approach. In the limit of an infinitely heavy-quark mass, the heavy quark inside a heavy baryon can be regarded as a static color source. In this limit, a heavy baryon can be viewed as N c − 1 valence quarks bound by the pion mean fields which are created self-consistently by the presence of the N c valence quarks. We show that this mean-field approach can successfully describe the masses and the magnetic moments of the lowest-lying singly heavy baryons, using all the parameters fixed in the light-baryon sector except for the hyperfine spin-spin interactions. We also review a recent work on identifying the newly found excited Ω c baryons reported by the LHCb Collaboration. We discuss possible scenarios to identify them. Finally, we give a future perspective on this pion mean-field approach.
Author Kim, Hyun-Chul
Author_xml – sequence: 1
  givenname: Hyun-Chul
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  fullname: Kim, Hyun-Chul
  email: hchkim@inha.ac.kr
  organization: Department of Physics, Inha University, School of Physics, Korea Institute for Advanced Study (KIAS)
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Issue 2
Keywords Pion mean fields
Heavy baryons
Flavor SU symmetry breaking
Chiral quark-soliton model
Language English
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Snippet We review in this paper a series of recent works on properties of singly heavy baryons, based on a pion mean-field approach. In the limit of an infinitely...
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SubjectTerms Baryons
JKPS 50th Anniversary Reviews
Magnetic moments
Mathematical and Computational Physics
Particle and Nuclear Physics
Physics
Physics and Astronomy
Quarks
Review Articles
Theoretical
물리학
Title Heavy Baryons in a Pion Mean-Field Approach: A Brief Review
URI https://link.springer.com/article/10.3938/jkps.73.165
https://www.proquest.com/docview/2077999422
https://www.kci.go.kr/kciportal/ci/sereArticleSearch/ciSereArtiView.kci?sereArticleSearchBean.artiId=ART002369763
Volume 73
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ispartofPNX Journal of the Korean Physical Society, 2018, 73(2), , pp.165-178
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