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Following Golterman and Shamir, we develop scale-chiral perturbation theory in the large $N_c$ and large $N_f$ Veneziano limit that incorporates both light-quark baryons and hidden local symmetric bosons and derive a leading-order scale symmetry Lagrangian applicable in nuclear physics.
G. Veneziano, “Some aspects of a unified approach to gauge, dual and Gribov theories,” Nucl. Phys. B 117
1976
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S.J. Brodsky, G.F. de Teramond and A. Deur, “ Nonperturbative QCD coupling and its β \beta -function from light-front holography,” Phys. Rev. D 81
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R. Horsley, H. Perlt, P.E.L. Rakow, G. Schierholz and A. Schiller, “The SU(3) beta function from numerical stochastic perturbation theory,” Phys. Lett. B 728
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2016
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W. G. Paeng, T. T. S. Kuo, H. K. Lee and M. Rho, “Scale-Invariant hidden local symmetry, topology change and dense baryonic matter,” Phys. Rev. C 93
2016
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K. Yamawaki, “Hidden local symmetry and beyond,” Int. J. Mod. Phys. E 26
2017
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2017
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C. Patrignani et al
2017
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Y. L. Ma and M. Rho, 2018. World Scientific, Singapore. Effective Field Theories, Dense Matter and Compact Stars
2018
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2017
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W.G. Paeng, H.K. Lee, Y.L. Ma and M. Rho, “Scale-invariant hidden local symmetry and tidal deformability from gravity waves,” in preparation
Cited in the paper.