<--- Back to Details
First PageDocument Content
Nuclear physics / Quantum chromodynamics / Pion / Hadron / Vector meson / Gauge theory / Chiral symmetry breaking / Scalar meson / Lagrangian / Physics / Particle physics / Mesons
Date: 2012-08-20 22:43:40
Nuclear physics
Quantum chromodynamics
Pion
Hadron
Vector meson
Gauge theory
Chiral symmetry breaking
Scalar meson
Lagrangian
Physics
Particle physics
Mesons

A modified pion-rho-omega mesonic Lagrangian in nuclear matter Juhyun Jung In collaboration with

Add to Reading List

Source URL: www.phys.kyushu-u.ac.jp

Download Document from Source Website

File Size: 653,61 KB

Share Document on Facebook

Similar Documents

Inhomogeneous chiral symmetry breaking in isospin-asymmetric strong-interaction matter Vom Fachbereich Physik der Technischen Universit¨at Darmstadt

Inhomogeneous chiral symmetry breaking in isospin-asymmetric strong-interaction matter Vom Fachbereich Physik der Technischen Universit¨at Darmstadt

DocID: 1v9cz - View Document

ARTICLES PUBLISHED ONLINE: 23 MAY 2016 | DOI: NPHYS3776 Imaging chiral symmetry breaking from Kekulé bond order in graphene Christopher Gutiérrez1, Cheol-Joo Kim2, Lola Brown2, Theanne Schiros3, Dennis Nordlund

ARTICLES PUBLISHED ONLINE: 23 MAY 2016 | DOI: NPHYS3776 Imaging chiral symmetry breaking from Kekulé bond order in graphene Christopher Gutiérrez1, Cheol-Joo Kim2, Lola Brown2, Theanne Schiros3, Dennis Nordlund

DocID: 1qLxu - View Document

Physical Results from 2+1 Flavor Lattice Domain Wall QCD Enno E. Scholz (RBC and UKQCD Collaborations) 23 October 2008

Physical Results from 2+1 Flavor Lattice Domain Wall QCD Enno E. Scholz (RBC and UKQCD Collaborations) 23 October 2008

DocID: 1pPGK - View Document

PHY-M-VF 10 Effective WSModule title:  Quantum Chromodynamics

PHY-M-VF 10 Effective WSModule title: Quantum Chromodynamics

DocID: 1pOIK - View Document

A modified pion-rho-omega mesonic Lagrangian in nuclear matter Juhyun Jung In collaboration with

A modified pion-rho-omega mesonic Lagrangian in nuclear matter Juhyun Jung In collaboration with

DocID: 1fE0a - View Document