THE PHYSICS OF ELEMENTARY PARTICLES AND FIELDS |
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Single Production of a Heavy T-Quark in the Left-Right Twin Higgs Model at LHeC |
SHEN Jie-Fen1**, CUI Xiao-Min2, LI Yu-Qi2, GAO Yin-Hao2
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1Department of Life Science and Technology, Xinxiang Medical University, Xinxiang 453003
2Henan Institute of Science and Technology, Xinxiang 453003
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Cite this article: |
SHEN Jie-Fen, CUI Xiao-Min, LI Yu-Qi et al 2011 Chin. Phys. Lett. 28 111203 |
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Abstract In the context of the left-right twin Higgs model, we study single production of a T−quark at the Large Hadron electron Collider based ep and γp colliders, which proceed via the processes e+b→νeT and γb→W−T. For the main decay mode T→φ+b→tbb, these two processes mainly transfer to the final states of 3b+ l (e or μ) + missing ET and 3b + 2l + missing ET, respectively. With the electron energy Ee=500 GeV and photon energy Ep=7 TeV, we find that the production rates can reach tens fb when the heavy T−quark mass mT<600 GeV. A simple phenomenological analysis is also given for the decay mode T→W+b. Our numerical results show that the SM background can be reduced by applying a cut on the transverse momentum of the final b−quark and the invariant mass of Wb. However, such a channel is only useful for a tiny parameter space.
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Keywords:
12.60.Fr
14.65.Jk
14.70.Fm
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Received: 22 August 2011
Published: 30 October 2011
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PACS: |
12.60.Fr
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(Extensions of electroweak Higgs sector)
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14.65.Jk
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(Other quarks (e.g., 4th generations))
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14.70.Fm
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(W bosons)
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[1] Chacko Z, Goh H S and Harnik R 2006 Phys. Rev. Lett. 96 231802
Chacko Z, Nomura Y, Papucci M and Perez G 2006 J. High Energy Phys. 0601 126
[2] Chacko Z, Goh H S and Harnik R 2006 J. High Energy Phys. 0601 108
[3] Lister A et al (CDF Collaboration) arXiv:hep-ph/0810.3349
[4] Goh H S and Su S 2007 Phys. Rev. D 75 075010
[5] Liu Y B and Wang X L 2010 Int. J. Mod. Phys. A 25 5885
[6] Yue C X, Yang H D and Ma W 2009 Nucl. Phys. B 818 1
[7] Yue C X, Su X S, Ma W and Zhang T T 2010 Chin. Phys. Lett. 27 101203
[8] Sultansoy S 2004 Eur. Phys. J. C 33 S01 1064
[9] Ciftci A, Sultansoy S and Yavas O 2001 Nucl. Instrum. Methods A 472 72
[10] Dainton J et al 2006 J. Instrum. 1 P10001
[11] Ciftci A K, Ciftci R and Sultansoy S 2008 Phys. Lett. B 660 534
Cakir O, Senol A and Tasci A 2009 Europhys. Lett. 88 11002
[12] Arkani-Hamed N, Cohen A G, Katz E and Georgi H 2002 J. High Energy Phys. 0207 034
[13] Amsler C et al (Particle Data Group) 2008 Phys. Lett. B 667 1
[14] Pukhov A et al 2004 arXiv:hep-ph/0412191
[15] Pumplin J et al(CTEQ Collaboration) 2006 J. High Energy Phys. 02 032
[16] Bayatian G L et al (CMS Collaboration) 2007 J. Phys. G 34 995
[17] Yue C X, Wang L H and Wen J 2008 Chin. Phys. Lett. 25 1613
[18] Han T, Logan H E, McElrath B and Wang L T 2003 Phys. Rev. D 67 095004
Perelstein M, Peskin M E and Pierce A 2004 Phys. Rev. D 69 075002
Cheung K, Kim C S, Lee K Y and Song J Phys. Rev. D 74 115013
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