A further study of the possible scaling region of lattice chiral fermions
arXiv:hep-lat/9910013 · doi:10.1103/PhysRevD.61.054502
Abstract
In the possible scaling region for an SU(2) lattice chiral fermion advocated in {\it Nucl. Phys.} B486 (1997) 282, no hard spontaneous symmetry breaking occurs and doublers are gauge-invariantly decoupled via mixing with composite three-fermion-states that are formed by local multifermion interactions. However the strong coupling expansion breaks down due to no ``static limit'' for the low-energy limit (). In both neutral and charged channels, we further analyze relevant truncated Green functions of three-fermion-operators by the strong coupling expansion and analytical continuation of these Green functions in the momentum space. It is shown that in the low-energy limit, these relevant truncated Green functions of three-fermion-states with the ``wrong'' chiralities positively vanish due to the generalized form factors (the wave-function renormalizations) of these composite three-fermion-states vanishing as O((pa)^4) for . This strongly implies that the composite three-fermion-states with ``wrong'' chirality are ``decoupled'' in this limit and the low-energy spectrum is chiral, as a consequence, chiral gauge symmetries can be exactly preserved.
A few typing-errors, in particular in Eq.50, have been corrected
Cited by in corpus (17)
- Shedding New Light on Sterile Neutrinos from XENON1T Experiment
- Chiral gauged fermions on a lattice
- Detailed discussions and calculations of quantum Regge calculus of Einstein-Cartan theory
- Higgs Boson and Top-Quark Masses and Parity-Symmetry Restoration
- Ultraviolet fixed point and massive composite particles in TeV scales
- Why is the top quark much heavier than other fermions?
- Vectorlike -boson coupling at TeV and third family fermion masses
- An effective strong-coupling theory of composite particles in UV-domain
- Resonant and nonresonant new phenomena of four-fermion operators for experimental searches
- Do high-energy neutrinos travel faster than photons in a discrete space-time?
- Phenomenology at the LHC of composite particles from strongly interacting Standard Model fermions via four-fermion operators of NJL type
- The (11112) model on a 1+1 dimensional lattice
- boson mass tension caused by its right-handed gauge coupling at high energies?
- Composite Fermions and their Pair States in a Strongly-Coupled Fermi Liquid
- Higgs boson origin from a gauge symmetric theory of massive composite particles and massless and bosons at the TeV scale
- Searching for exclusive leptoquarks with the Nambu-Jona-Lasinio composite model at the LHC and HL-LHC
- Spontaneous Peccei-Quinn symmetry breaking renders sterile neutrino, axion and boson to be candidates for dark matter particles