Bosons after Symmetry Breaking in Quantum Field Theory
Abstract
We present a unified description of the spontaneous symmetry breaking and its associated bosons in fermion field theory. There is no Goldstone boson in the fermion field theory models of Nambu-Jona-Lasinio, Thirring and QCD after the chiral symmetry is spontaneously broken in the new vacuum. The defect of the Goldstone theorem is clarified, and the "massless boson" predicted by the theorem is virtual and corresponds to just a massless fermion and antifermion pair. Further, we discuss the exact spectrum of the Thirring model by the Bethe ansatz solutions, and the analytical expressions of all the physical observables enable us to understand the essence of the spontaneous symmetry breaking in depth. Also, we examine the boson spectrum in QCD, and show that bosons always have a finite mass for colors. The problem of the light cone prescription in QCD is discussed, and it is shown that the trivial light cone vacuum is responsible for the wrong prediction of the boson mass.
Cite
@article{arxiv.0711.0075,
title = {Bosons after Symmetry Breaking in Quantum Field Theory},
author = {Takehisa Fujita and Makoto Hiramoto and Hidenori Takahashi},
journal= {arXiv preprint arXiv:0711.0075},
year = {2007}
}
Comments
56 pages,8 figures