English

Determination of $\tan\beta$ at a Future $e^+e^-$ Linear Collider

High Energy Physics - Phenomenology 2011-07-19 v2

Abstract

It is widely stated that the ratio of neutral Higgs field vacuum expectation values, \tanb\tanb, is one of the most difficult parameters to determine in either the Minimal Supersymmetric Standard Model (MSSM) or a general type-II Two-Higgs Doublet Model (2HDM). Assuming an energy and integrated luminosity of \rts=500\gev\rts=500\gev and \call=2000\fbi\call=2000\fbi, we show that a very accurate determination of \tanb\tanb will often be possible using Higgs production rates and/or Higgs decays. Based on a TESLA simulation, and assuming no other light Higgs bosons and 100mA200\gev100\leq m_A \leq 200\gev, we find that the rate for the process \epemb\antibAb\antibb\antib\epem\to b\anti b A \to b\anti b b\anti b provides an excellent determination of \tanb\tanb at high \tanb\tanb. In the MSSM Higgs sector, the rate for \epemb\antibA+b\antibHb\antibb\antib\epem\to b\anti b A+ b\anti b H \to b\anti b b\anti b (\epemHAb\antibb\antib\epem\to HA \to b\anti b b\anti b) provides a good determination of \tanb\tanb at high (low) \tanb\tanb, respectively, at moderate mAm_A values. We also show that direct measurement of the average total width of the HH and AA in \epemHAb\antibb\antib\epem\to HA \to b\anti b b\anti b events provides an excellent determination of \tanb\tanb at large \tanb\tanb.

Keywords

Cite

@article{arxiv.hep-ph/0112334,
  title  = {Determination of $\tan\beta$ at a Future $e^+e^-$ Linear Collider},
  author = {J. F. Gunion and T. Han and J. Jiang and S. Mrenna and A. Sopczak},
  journal= {arXiv preprint arXiv:hep-ph/0112334},
  year   = {2011}
}

Comments

7 pages, 3 figures. Contribution to the Snowmass 2001 Workshop on ``The Future of Particle Physics'', Snowmass, CO, USA, July 2001. Revised to include several improvements and additional references