TY - JOUR
T1 - Fermions on thick branes in the background of sine-Gordon kinks
AU - Liu, Yu Xiao
AU - Zhang, Li Da
AU - Zhang, Li Jie
AU - Duan, Yi Shi
PY - 2008/9/12
Y1 - 2008/9/12
N2 - A class of thick branes in the background of sine-Gordon kinks with a scalar potential V()=p(1+cos 2 q) was constructed by R. Koley and S. Kar. In this paper, in the background of the warped geometry, we investigate the issue of localization of spin-1/2 fermions on these branes in the presence of two types of scalar-fermion couplings: ηΨ̄ Ψ and ηΨ̄sin Ψ. By presenting the mass-independent potentials in the corresponding Schrödinger equations, we obtain the lowest Kaluza-Klein modes and a continuous gapless spectrum of Kaluza-Klein states with m2>0 for both types of couplings. For the Yukawa coupling ηΨ̄ Ψ, the effective potential of the right chiral fermions for positive q and η is always positive; hence only the effective potential of the left chiral fermions could trap the corresponding zero mode. This is a well-known conclusion which is discussed extensively in the literature. However, for the coupling ηΨ̄sin Ψ, the effective potential of the right chiral fermions for positive q and η is no longer always positive. Although the value of the potential at the location of the brane is still positive, it has a series of wells and barriers on each side, which ensures that the right chiral fermion zero mode could be trapped. Thus we may draw the following remarkable conclusion: for positive η and q, the potentials of both the left and right chiral fermions could trap the corresponding zero modes under certain restrictions.
AB - A class of thick branes in the background of sine-Gordon kinks with a scalar potential V()=p(1+cos 2 q) was constructed by R. Koley and S. Kar. In this paper, in the background of the warped geometry, we investigate the issue of localization of spin-1/2 fermions on these branes in the presence of two types of scalar-fermion couplings: ηΨ̄ Ψ and ηΨ̄sin Ψ. By presenting the mass-independent potentials in the corresponding Schrödinger equations, we obtain the lowest Kaluza-Klein modes and a continuous gapless spectrum of Kaluza-Klein states with m2>0 for both types of couplings. For the Yukawa coupling ηΨ̄ Ψ, the effective potential of the right chiral fermions for positive q and η is always positive; hence only the effective potential of the left chiral fermions could trap the corresponding zero mode. This is a well-known conclusion which is discussed extensively in the literature. However, for the coupling ηΨ̄sin Ψ, the effective potential of the right chiral fermions for positive q and η is no longer always positive. Although the value of the potential at the location of the brane is still positive, it has a series of wells and barriers on each side, which ensures that the right chiral fermion zero mode could be trapped. Thus we may draw the following remarkable conclusion: for positive η and q, the potentials of both the left and right chiral fermions could trap the corresponding zero modes under certain restrictions.
UR - http://www.scopus.com/inward/record.url?scp=52649152339&partnerID=8YFLogxK
U2 - 10.1103/PhysRevD.78.065025
DO - 10.1103/PhysRevD.78.065025
M3 - Article
AN - SCOPUS:52649152339
SN - 1550-7998
VL - 78
JO - Physical Review D - Particles, Fields, Gravitation and Cosmology
JF - Physical Review D - Particles, Fields, Gravitation and Cosmology
IS - 6
M1 - 065025
ER -