Journalartikel

Diquark correlations in hadron physics: Origin, impact and evidence


AutorenlisteBarabanov, M. Yu; Bedolla, M. A.; Brooks, W. K.; Cates, G. D.; Chen, C.; Chen, Y.; Cisbani, E.; Ding, M.; Eichmann, G.; Ent, R.; Ferretti, J.; Gothe, R. W.; Horn, T.; Liuti, S.; Mezrag, C.; Pilloni, A.; Puckett, A. J. R.; Roberts, C. D.; Rossi, P.; Salme, G.; Santopinto, E.; Segovia, J.; Syritsyn, S. N.; Takizawa, M.; Tomasi-Gustafsson, E.; Wein, P.; Wojtsekhowski, B. B.

Jahr der Veröffentlichung2021

ZeitschriftProgress in Particle and Nuclear Physics

Bandnummer116

ISSN0146-6410

eISSN1873-2224

Open Access StatusGreen

DOI Linkhttps://doi.org/10.1016/j.ppnp.2020.103835

VerlagElsevier


Abstract
The last decade has seen a marked shift in how the internal structure of hadrons is understood. Modern experimental facilities, new theoretical techniques for the continuum bound-state problem and progress with lattice-regularised QCD have provided strong indications that soft quark+quark (diquark) correlations play a crucial role in hadron physics. For example, theory indicates that the appearance of such correlations is a necessary consequence of dynamical chiral symmetry breaking, viz. a corollary of emergent hadronic mass that is responsible for almost all visible mass in the universe; experiment has uncovered signals for such correlations in the flavour-separation of the proton's electromagnetic form factors; and phenomenology suggests that diquark correlations might be critical to the formation of exotic tetra- and penta-quark hadrons. A broad spectrum of such information is evaluated herein, with a view to consolidating the facts and there from moving toward a coherent, unified picture of hadron structure and the role that diquark correlations might play. (C) 2020 Published by Elsevier B.V.



Zitierstile

Harvard-ZitierstilBarabanov, M., Bedolla, M., Brooks, W., Cates, G., Chen, C., Chen, Y., et al. (2021) Diquark correlations in hadron physics: Origin, impact and evidence, Progress in Particle and Nuclear Physics, 116, Article 103835. https://doi.org/10.1016/j.ppnp.2020.103835

APA-ZitierstilBarabanov, M., Bedolla, M., Brooks, W., Cates, G., Chen, C., Chen, Y., Cisbani, E., Ding, M., Eichmann, G., Ent, R., Ferretti, J., Gothe, R., Horn, T., Liuti, S., Mezrag, C., Pilloni, A., Puckett, A., Roberts, C., Rossi, P., ...Wojtsekhowski, B. (2021). Diquark correlations in hadron physics: Origin, impact and evidence. Progress in Particle and Nuclear Physics. 116, Article 103835. https://doi.org/10.1016/j.ppnp.2020.103835



Schlagwörter


ASYMPTOTIC FREEDOMBaryon spectra and structureDEEP-INELASTIC SCATTERINGDiquark correlationsDISTRIBUTION AMPLITUDESDYSON-SCHWINGER EQUATIONSELASTIC ELECTRON-SCATTERINGELECTROMAGNETIC FORM-FACTORSEXCLUSIVE PROCESSESLattice quantum chromodynamicsQUANTUM CHROMODYNAMICSQuark modelsRELATIVIZED QUARK-MODELSCHEMATIC MODELSYMMETRY-BREAKING


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