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Spin-Orbit mediated spin relaxation in monolayer MoS2
We study the intra-valley spin-orbit mediated spin relaxation in monolayers
of MoS2 within a two bands effective Hamiltonian. The intrinsic spin splitting
of the valence band as well as a Rashba-like coupling due to the breaking of
the out-of-plane inversion symmetry are considered. We show that, in the hole
doped regime, the out-of-plane spin relaxation is not very efficient since the
spin splitting of the valence band tends to stabilize the spin polarization in
this direction. We obtain spin lifetimes larger than nanoseconds, in agreement
with recent valley polarization experiments.Comment: final version, 9 pages, 5 figure
Diphoton decay for a GeV scalar boson in an model
In the context of a nonuniversal and anomaly free extension of the
standard model, we examine the decay of a GeV scalar singlet state,
, as a possible explanation of the observed diphoton excess
announced by the ATLAS and CMS collaborations at CERN-LHC collider. One-loop
decay to photons is allowed through three heavy singlet quarks and one charged
Higgs boson into the loop. We obtain, for different width approximations and
for masses of the exotic singlet quarks in the region GeV, a
production cross section compatible
with ATLAS and CMS collaborations data. We also include another scalar singlet,
, as a dark matter candidate that may couple with the 750 GeV scalar at
tree level with production cross sections in agreement with ATLAS and CMS.Comment: 5 figures, discussion extended, 2 new figure
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