A Decisive Test of Superstring-Inspired E(6) Models
Manuel Drees, Atsushi Yamada
Abstract
We point out that in a large class of superstring--inspired E(6) models, either an e+e- collider operating at a center--of--mass energy = 1.5 TeV or higher must detect the pair production of charged or neutral exotic leptons, or an e+e- collider with ≥ 300 GeV must discover at least one light neutral Higgs boson with invisible branching ratio exceeding 50\%. If neither of these two signals is seen, the lightest neutral exotic lepton would overclose the universe, and the model could be completely excluded, independent of the values of the numerous free parameters. Future Higgs searches might lower the energy of the e+e- collider needed to test these models decisively. The only assumptions we have to make are that R-parity is exact, so that the lightest exotic lepton is stable if it is lighter than the lightest neutralino, and that no SO(10) singlet scalar gets a vacuum expectation of order 1010 GeV or higher. If the second condition is violated, the model effectively reduces to an SO(10) model as far as collider experiments are concerned.
Create a lesson
Related papers
Electromagnetic form factors of vector mesons in Einstein-dilaton holographic QCD
Alfonso Ballon-Bayona, Tobias Frederico, Luis A. H. Mamani et al.
An invertible map between 3D Breit-frame mechanical distributions and 2D infinite-momentum-frame mechanical densities in spin-1 hadrons
Kemal Tezgin
Adiabatic hydrodynamization with transverse spatial gradients in boost-invariant plasmas
Uri Sharell, Jasmine Brewer, Weiyao Ke
Line shapes of Ω(2012) production in the Ξ K and Ξπ K decay channels
Natsumi Ikeno, Eulogio Oset
A quantum representation of π fragmentation functions through variational quantum circuits
David F. Rentería-Estrada, Roger J. Hernández-Pinto, Germán Rodrigo et al.
Particle Physics Driven by Quantum Technology - Quantum Simulations and Quantum Sensing
Itay M. Bloch, Marcela Carena, Yifan Chen et al.