Kyushu University Academic Staff Educational and Research Activities Database
Researcher information
Kojima Kentaro Last modified date:2013.6.4



Undergraduate School


Academic Degree
Ph.D. (Science)
Field of Specialization
Theoretical elementary particle physics
Research
Research Interests
  • Physics beyond the standard model of elementary particles
    keyword : Higgs particle, Grand Unified Theory (GUT), Supersymmetry, Physics with extra dimensions, Flavor physics, Neutrino physics
    2004.04.
Academic Activities
Papers
1. Kentaro Kojima, Kazunori Takenaga, Toshifumi Yamashita,Grand Gauge-Higgs Unification,Physical Review D,84 (2011) 051701 (KYUSHU-HET-130, arXiv:1103.1234 (hep-ph)),2011.09
[URL].
2. Cascade Textures and SUSY SO(10) GUT
[URL].
3. Cascade Hierarchy in SUSY SU(5) GUT
[URL].
4. Kentaro Kojima and Hideyuki Sawanaka,Probing neutrino masses and tri-bimaximality with lepton flavor violation searches,Physics Letters B, 678 (2009) 373–379 (arXiv:0901.4812 [hep-ph]),2009.07.
5. Kentaro Kojima, Kazunori Takenaga, and Toshifumi Yamashita,Multi-Higgs Mass Spectrum in Gauge-Higgs Unification,Physical Review D,77 (2008) 075004,2008.01.
6. Kenzo Inoue, Kentaro Kojima, and Koichi Yoshioka,Probing flavor structure in Unified theory with scalar spectroscopy,Journal of High Energy Physics,0707 (2007) 027,2007.07.
7. Kenzo Inoue, Kentaro Kojima, and Koichi Yoshioka,Low-energy variety of asymmetric SUSY flavor structure,Physics Letters B,B644 (2007) 172,2007.01.
8. Kentaro Kojima,Phenomenological aspects of generation twisted supersymmetric unification,Proceedings of Summer Institute 2006,2007.01.
9. Kenzo Inoue, Kentaro Kojima, and Koichi Yoshioka,Neutrino-induced Electroweak Symmetry Breaking in Supersymmetric SO(10) Models,Journal of High Energy Physics,0607 (2006) 032,2006.07.
Presentations
1. Cascade hierarchy in Grand Unified Theory.
2. Cascade Hierarchy in Grand Unified Theories.
3. Implications for neutrino oscillation parameters from lepton rare dacay searches.
4. Probing unified flavor structure with sfermion non-degeneracy.
5. Low-energy variety of bottom-tau Yukawa unification.
6. Scalar non-degeneracy and flavor unification.
7. Mass spectrum in multi-higgs models and non-flat direction of the potential.
8. Unified flavor structure and superparticles.
9. Non-flat direction and Higgs mass spectrum in gauge-Higgs unification.
10. Superparticles as a probe into matter unification.
11. Probing flavor structure in Unified theory with scalar spectroscopy.
12. Probing flavor structure in Unified theory with scalar spectroscopy.
13. Matter unification and superparticle spectrum in SUSY-GUT models.
14. Phenomenological aspects of generation twisted supersymmetric unification.
15. Phenomenological aspects of generation twisted supersymmetric GUT.
16. Phenomenology of Generation Twisted SUSY-GUT.
17. Neutrino-induced Electroweak Symmetry Breaking in Supersymmetric SO(10) Unification.
18. Neutrino effects on the radiative electroweak symmetry breaking in SUSY SO(10) GUT scenario.
19. Radiative Electroweak Symmetry Breaking with Neutrino Effects in Supersymmetric SO (10) Unification.
20. Radiative Electroweak Symmetry Breaking with Neutrino Effects in Supersymmetric SO(10) Unification.
21. Top-Bottom-Tau Yukawa Coupling Unification with Neutrino Effects.
22. Low-energy variety of bottom-tau Yukawa unification.
23. Radiative electroweak symmetry breaking in MSSM with Yukawa unification.
Membership in Academic Society
  • Liberal and General Education Society of Japan
  • Japan Society for Educational Technology
  • The physical society of Japan