275,855 research outputs found
Self-tuning of cosmological constant and exit from inflation
I review the recent 5D self-tuning solutions of the cosmological constant
problem, and try to unify two cosmological constant problems within the
framework of the self-tuning solutions. One problem, the large cosmological
constant needed for inflation, is interpreted by starting with the parameters
allowing only the dS vacuum, and the vanishing cosmological constant at a true
vacuum is realized by changing parameters by exit from inflation at the brane
such that the self-tuning solution is allowed.Comment: Latex file of 8 pages, including 2 figures. Talk presented at
COSPA-03, Taipei, Taiwan, Nov. 13-15, 200
R-parity from string compactification
In this paper, we embed the parity as a discrete subgroup of a
global symmetry \UoR\,obtained from compactification of heterotic
string \EE8. A part of \UoR\,transformation is the shift of the anticommuting
variable to which necessarily incoorporate
the transformation of internal space coordinate. Out of six internal spaces, we
identify three U(1)'s whose charges are denoted as , and
. The \UoR~is defined as \UEE\UKK~where \UEE~is the part from
\EE8 and \UKK~is the part generated by , and . We
propose a method to define a \UoR~direction. The needed vacuum expectation
values for breaking gauge U(1)'s except U(1) of the standard model carry
\UoR~charge 4 modulo 4 such that \UoR~is broken down to at the grand
unification scale. is broken to between the intermediate
(\sim 10^{11\,}\gev) and the electroweak scales (100\,\gev\sim 1\,\tev).
The conditions we impose are proton longevity, a large top quark mass, and
acceptable magnitudes for the term and neutrino masses.Comment: 21 pages with 3 figure
Is an axizilla possible for di-photon resonance?
Heavy axion-like particles, called axizillas, are simple extensions of the
standard model(SM). An axizilla is required not to couple to the quarks,
leptons, and Brout-Englert-Higgs doublets of the SM, but couple to the gauge
anomalies of the and photon. It is possible to have its branching
ratios(BRs) to two photons greater than 10% and to two 's less than 10%. To
have a (production cross section)(BR to di-photons) at a
level, a TeV scale heavy quark is required for
the gluon--quark fusion process. The decay of to axizilla plus quark, and
the subsequent decay of the axizilla to two photons can be fitted at the
required level of .Comment: 9 pages of latex file with 3 figure
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