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Single charged Higgs boson production at next generation linear colliders

Single charged Higgs boson production at next generation linear colliders
Single charged Higgs boson production at next generation linear colliders
We study the single production of charged Higgs bosons in e+e- collisions, chiefly in the Minimal Supersymmetric Standard Model. Our analysis complements foregoing studies of the pair production channel especially in regions where the kinematic constraint suppresses pair production. We present cross sections relevant to experiments at the next generation linear colliders and some brief discussions of their phenomenology. Our analysis shows that the single production is a useful alternative channel for studying the phenomenology of charged Higgs bosons, and there are regions of parameter space where it is accessible beyond the kinematic limit for pair production.
011-028
Kanemura, S.
92633ccf-3900-4729-8f19-addac163e8b5
Moretti, S.
b57cf0f0-4bc3-4e02-96e3-071255366614
Odagiri, K.
3fec79d1-f4c3-4863-be8f-6ca599d72fec
Kanemura, S.
92633ccf-3900-4729-8f19-addac163e8b5
Moretti, S.
b57cf0f0-4bc3-4e02-96e3-071255366614
Odagiri, K.
3fec79d1-f4c3-4863-be8f-6ca599d72fec

Kanemura, S., Moretti, S. and Odagiri, K. (2001) Single charged Higgs boson production at next generation linear colliders. Journal of High Energy Physics, 102 (2001), 011-028. (doi:10.1088/1126-6708/2001/02/011).

Record type: Article

Abstract

We study the single production of charged Higgs bosons in e+e- collisions, chiefly in the Minimal Supersymmetric Standard Model. Our analysis complements foregoing studies of the pair production channel especially in regions where the kinematic constraint suppresses pair production. We present cross sections relevant to experiments at the next generation linear colliders and some brief discussions of their phenomenology. Our analysis shows that the single production is a useful alternative channel for studying the phenomenology of charged Higgs bosons, and there are regions of parameter space where it is accessible beyond the kinematic limit for pair production.

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Published date: 7 February 2001

Identifiers

Local EPrints ID: 38478
URI: http://eprints.soton.ac.uk/id/eprint/38478
PURE UUID: 835e7dfb-24c1-4de0-96de-48fd48e7b620
ORCID for S. Moretti: ORCID iD orcid.org/0000-0002-8601-7246

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Date deposited: 09 Jun 2006
Last modified: 16 Mar 2024 03:34

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Contributors

Author: S. Kanemura
Author: S. Moretti ORCID iD
Author: K. Odagiri

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