Minimal flavor violation in the minimal U(1)B-L model and resonant leptogenesis

被引:20
作者
Okada, Nobuchika [1 ]
Orikasa, Yuta [2 ]
Yamada, Toshifumi [3 ]
机构
[1] Univ Alabama, Dept Phys & Astron, Tuscaloosa, AL 35487 USA
[2] Osaka Univ, Dept Phys, Toyonaka, Osaka 5600043, Japan
[3] Univ Tokyo, Dept Phys, Tokyo 1130033, Japan
基金
日本学术振兴会;
关键词
BARYOGENESIS;
D O I
10.1103/PhysRevD.86.076003
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
We investigate the resonant leptogenesis scenario in the minimally U(1)(B-L) extended standard model with minimal flavor violation. In our model, the U(1)(B-L) gauge symmetry is broken at the TeV scale and standard model singlet neutrinos gain Majorana masses of order TeV. In addition, we introduce a flavor symmetry on the singlet neutrinos at a scale higher than TeV. The flavor symmetry is explicitly broken by the neutrino Dirac Yukawa coupling, which induces splittings in the singlet neutrino Majorana masses at lower scales through renormalization group evolutions. We call this setup minimal flavor violation. The mass splittings are proportional to the tiny Dirac Yukawa coupling, and hence they automatically enhance the CP asymmetry parameter necessary for the resonant leptogenesis mechanism. In this paper, we calculate the baryon number yield by solving the Boltzmann equations, including the effects of U(1)(B-L) gauge boson that also has TeV scale mass and causes washing-out of the singlet neutrinos in the course of thermal leptogenesis. The Dirac Yukawa coupling for neutrinos is fixed in terms of neutrino oscillation data and an arbitrary 3 X 3 complex-valued orthogonal matrix. We show that the right amount of baryon number asymmetry can be achieved through thermal leptogenesis in the context of the minimal flavor violation with singlet neutrinos and U(1)(B-L) gauge boson at the TeV scale. These particles can be discovered at the LHC in the near future.
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页数:10
相关论文
共 29 条
[1]   Observation of Electron-Antineutrino Disappearance at Daya Bay [J].
An, F. P. ;
Bai, J. Z. ;
Balantekin, A. B. ;
Band, H. R. ;
Beavis, D. ;
Beriguete, W. ;
Bishai, M. ;
Blyth, S. ;
Boddy, K. ;
Brown, R. L. ;
Cai, B. ;
Cao, G. F. ;
Cao, J. ;
Carr, R. ;
Chan, W. T. ;
Chang, J. F. ;
Chang, Y. ;
Chasman, C. ;
Chen, H. S. ;
Chen, H. Y. ;
Chen, S. J. ;
Chen, S. M. ;
Chen, X. C. ;
Chen, X. H. ;
Chen, X. S. ;
Chen, Y. ;
Chen, Y. X. ;
Cherwinka, J. J. ;
Chu, M. C. ;
Cummings, J. P. ;
Deng, Z. Y. ;
Ding, Y. Y. ;
Diwan, M. V. ;
Dong, L. ;
Draeger, E. ;
Du, X. F. ;
Dwyer, D. A. ;
Edwards, W. R. ;
Ely, S. R. ;
Fang, S. D. ;
Fu, J. Y. ;
Fu, Z. W. ;
Ge, L. Q. ;
Ghazikhanian, V. ;
Gill, R. L. ;
Goett, J. ;
Gonchar, M. ;
Gong, G. H. ;
Gong, H. ;
Gornushkin, Y. A. .
PHYSICAL REVIEW LETTERS, 2012, 108 (17)
[2]  
[Anonymous], 1994, The Early Universe
[3]   Deviations from tribimaximal mixing due to the vacuum expectation value misalignment in A4 models [J].
Barry, James ;
Rodejohann, Werner .
PHYSICAL REVIEW D, 2010, 81 (09)
[4]  
Basso L., ARXIV11064462 U SOUT
[5]   Z′ discovery potential at the LHC in the minimal B-L extension of the standard model [J].
Basso, Lorenzo ;
Belyaev, Alexander ;
Moretti, Stefano ;
Pruna, Giovanni Marco ;
Shepherd-Themistocleous, Claire H. .
EUROPEAN PHYSICAL JOURNAL C, 2011, 71 (04) :1-17
[6]   Probing resonant leptogenesis at the LHC [J].
Blanchet, Steve ;
Chacko, Z. ;
Granor, Solomon S. ;
Mohapatra, Rabindra N. .
PHYSICAL REVIEW D, 2010, 82 (07)
[7]   Baryon and lepton number violation rates across the electroweak crossover [J].
Burnier, Y ;
Laine, M ;
Shaposhnikov, M .
JOURNAL OF COSMOLOGY AND ASTROPARTICLE PHYSICS, 2006, (02)
[8]   Oscillating neutrinos and μ→e,γ [J].
Casas, JA ;
Ibarra, A .
NUCLEAR PHYSICS B, 2001, 618 (1-2) :171-204
[9]   Radiatively induced leptogenesis in a minimal seesaw model [J].
Felipe, RG ;
Joaquim, FR ;
Nobre, BM .
PHYSICAL REVIEW D, 2004, 70 (08)
[10]   Baryogenesis through mixing of heavy Majorana neutrinos [J].
Flanz, M ;
Paschos, EA ;
Sarkar, U ;
Weiss, J .
PHYSICS LETTERS B, 1996, 389 (04) :693-699