5,473 research outputs found
Pair of Heavy-Exotic-Quarks at LHC
We study the production and signatures of heavy exotic quarks pairs at LHC in
the framework of the vector singlet model (VSM), vector doublet model (VDM) and
fermion-mirror-fermion (FMF) model. The pair production cross sections for the
electroweak and strong sector are computed.Comment: 7 pages, 6 figures. accept at Int. Jour. of Mod. Phy
Large scale grain mantle disruption in the Galactic Center
We present observations of C2H5OH toward molecular clouds in Sgr A, Sgr B2
and associated with thermal and non-thermal features in the Galactic center.
C2H5OH emission in Sgr A and Sgr B2 is widespread, but not uniform. C2H5OH
emission is much weaker or it is not detected in some molecular clouds in both
complexes, in particular those with radial velocities between 70 and 120 km/s.
While most of the clouds associated with the thermal features do not show
C2H5OH emission, that associated with the Non-Thermal Radio Arc shows emission.
The fractional abundance of C2H5OH in most of the clouds with radial velocities
between 0 and 70 km/s in Sgr A and Sgr B2 is relatively high, of few 1e-8. The
C2H5OH abundance decreases by more than one order of magnitude (aprox. 1e-9) in
the clouds associated with the thermal features. The large abundance of C2H5OH
in the gas-phase indicates that C2H5OH has formed in grains and released to
gas-phase by shocks in the last aprox. 1e5 years.Comment: In press in Astrophysical Journal Letters 7 pages, 1 table, 1 figur
Photon-Dominated Chemistry in the Nucleus of M82: Widespread HOC+ emission in the inner 650 pc disk
The nucleus of M82 has been mapped in several 3mm and 1mm lines of CN, HCN,
C2H, c-C3H2, CH3C2H, HC3N and HOC+ using the IRAM 30m telescope. These species
have been purposely selected as good tracers of photon-dominated chemistry. We
have measured [CN]/[HCN] ~ 5 in the inner 650 pc galaxy disk. Furthermore, we
have detected the HOC+ 1--0 line with an intensity similar to that of the
H13CO+ 1--0 line. This implies a [HCO+]/[HOC+] ratio of ~40. These results
corroborate the existence of a giant photo-dissociation region (PDR) in the
nucleus of M82. In fact, the low [HCO+]/[HOC+] ratio can only be explained if
the nucleus of M82 is formed by small (r<0.02-0.2 pc) and dense (n ~ a few
10^4--10^5 cm^{-3}) clouds immersed in an intense UV field (G_0 ~ 10^4 in units
of the Habing field). The detection of the hydrocarbons c-C3H2 and CH3C2H in
the nucleus of M82 suggests that a complex carbon chemistry is developing in
this giant PDR.Comment: 4 pages, 2 fig
New scalar resonances from sneutrino-Higgs mixing in supersymmetry with small lepton number (R-parity) violation
We consider new s-channel scalar exchanges in top quark and massive
gauge-bosons pair production in e+e- collisions, in supersymmetry with a small
lepton number violation. We show that a soft bilinear lepton number violating
term in the scalar potential which mixes the Higgs and the slepton fields can
give rise to a significant scalar resonance enhancement in e+e- -> ZZ, W+W- and
in e+e- -> t t(bar). The sneutrino-Higgs mixed state couples to the incoming
light leptons through its sneutrino component and to either the top quark or
the massive gauge bosons through its Higgs component. Such a scalar resonance
in these specific production channels cannot result from trilinear Yukawa-like
R-parity violation alone, and may, therefore, stand as strong evidence for the
existence of R-parity violating bilinears in the supersymmetric scalar
potential. We use the LEP2 measurements of the WW and ZZ cross-sections to
place useful constrains on this scenario, and investigate the expectations for
the sensitivity of a future linear collider to these signals. We find that
signals of these scalar resonances, in particular in top-pair production, are
well within the reach of linear colliders in the small lepton number violation
scenario.Comment: 22 pages in revtex, 10 figures embadded in the text using epsfi
Enhancing digital soil mapping in southeastern Brazil: incorporating stream density and soil reflectance from multiple depths.
This study proposes a novel and simple method to incorporate laboratory soil spectral data in the production of digital soil maps
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