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Effective field theories for nuclei and compact-star matter: chiral nuclear dynamics (CND-III)

Effective field theories have been widely used in nuclear physics. This volume is devoted to exploring the intricate structure of compact-star matter inaccessible directly from QCD. It is principally anchored on hidden symmetries and topology presumed to be encoded in QCD. It differs from standard e...

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Detalles Bibliográficos
Autores principales: Ma, Yong-Liang, Rho, Mannque
Lenguaje:eng
Publicado: World Scientific 2019
Materias:
Acceso en línea:http://cds.cern.ch/record/2630220
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author Ma, Yong-Liang
Rho, Mannque
author_facet Ma, Yong-Liang
Rho, Mannque
author_sort Ma, Yong-Liang
collection CERN
description Effective field theories have been widely used in nuclear physics. This volume is devoted to exploring the intricate structure of compact-star matter inaccessible directly from QCD. It is principally anchored on hidden symmetries and topology presumed to be encoded in QCD. It differs from standard effective field theory and energy density functional approaches in that it exploits renormalization-group flow in the complex "vacuum" sliding with density inferred from topology change identified as a manifestation of baryon-quark continuity in dense matter. It makes a variety of predictions that drastically differ from the conventional treatments that could be tested by upcoming terrestrial and astrophysical experiments. This monograph recounts how to go, in one unique field theoretic formalism in terms of hadronic degrees of freedom, from finite nuclei to dense compact-star matter that could be explored in RIB-type machines in nuclear physics as well as in LIGO-type gravity waves in astrophysics.
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institution Organización Europea para la Investigación Nuclear
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publishDate 2019
publisher World Scientific
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spelling cern-26302202021-04-21T18:45:47Zhttp://cds.cern.ch/record/2630220engMa, Yong-LiangRho, MannqueEffective field theories for nuclei and compact-star matter: chiral nuclear dynamics (CND-III)Nuclear Physics - TheoryEffective field theories have been widely used in nuclear physics. This volume is devoted to exploring the intricate structure of compact-star matter inaccessible directly from QCD. It is principally anchored on hidden symmetries and topology presumed to be encoded in QCD. It differs from standard effective field theory and energy density functional approaches in that it exploits renormalization-group flow in the complex "vacuum" sliding with density inferred from topology change identified as a manifestation of baryon-quark continuity in dense matter. It makes a variety of predictions that drastically differ from the conventional treatments that could be tested by upcoming terrestrial and astrophysical experiments. This monograph recounts how to go, in one unique field theoretic formalism in terms of hadronic degrees of freedom, from finite nuclei to dense compact-star matter that could be explored in RIB-type machines in nuclear physics as well as in LIGO-type gravity waves in astrophysics.World Scientificoai:cds.cern.ch:26302202019
spellingShingle Nuclear Physics - Theory
Ma, Yong-Liang
Rho, Mannque
Effective field theories for nuclei and compact-star matter: chiral nuclear dynamics (CND-III)
title Effective field theories for nuclei and compact-star matter: chiral nuclear dynamics (CND-III)
title_full Effective field theories for nuclei and compact-star matter: chiral nuclear dynamics (CND-III)
title_fullStr Effective field theories for nuclei and compact-star matter: chiral nuclear dynamics (CND-III)
title_full_unstemmed Effective field theories for nuclei and compact-star matter: chiral nuclear dynamics (CND-III)
title_short Effective field theories for nuclei and compact-star matter: chiral nuclear dynamics (CND-III)
title_sort effective field theories for nuclei and compact-star matter: chiral nuclear dynamics (cnd-iii)
topic Nuclear Physics - Theory
url http://cds.cern.ch/record/2630220
work_keys_str_mv AT mayongliang effectivefieldtheoriesfornucleiandcompactstarmatterchiralnucleardynamicscndiii
AT rhomannque effectivefieldtheoriesfornucleiandcompactstarmatterchiralnucleardynamicscndiii