38,778 research outputs found
Asymptotic minimax risk of predictive density estimation for non-parametric regression
We consider the problem of estimating the predictive density of future
observations from a non-parametric regression model. The density estimators are
evaluated under Kullback--Leibler divergence and our focus is on establishing
the exact asymptotics of minimax risk in the case of Gaussian errors. We derive
the convergence rate and constant for minimax risk among Bayesian predictive
densities under Gaussian priors and we show that this minimax risk is
asymptotically equivalent to that among all density estimators.Comment: Published in at http://dx.doi.org/10.3150/09-BEJ222 the Bernoulli
(http://isi.cbs.nl/bernoulli/) by the International Statistical
Institute/Bernoulli Society (http://isi.cbs.nl/BS/bshome.htm
Molecular states with hidden charm and strange in QCD Sum Rules
This work uses the QCD Sum Rules to study the masses of the
and molecular states with quantum numbers . Interpolating currents with definite C-parity are employed, and the
contributions up to dimension eight in the Operator Product Expansion (OPE) are
taken into account. The results indicate that two hidden strange
charmonium-like states may exist in the energy ranges of GeV
and GeV, respectively. The hidden strange charmonium-like
states predicted in this work may be accessible in future experiments, e.g.
BESIII, BelleII and SuperB. Possible decay modes, which may be useful in
further research, are predicted.Comment: 15 pages, 6 figures, 2 tables, to appear in EP
Estimating the mass of the hidden charm tetraquark state via QCD sum rules
By using QCD sum rules, the mass of the hidden charm tetraquark
state with (HCTV) is
estimated, which presumably will turn out to be the newly observed
charmonium-like resonance . In the calculation, contributions up
to dimension eight in the operator product expansion(OPE) are taken into
account. We find , which is
consistent, within the errors, with the experimental observation of
. Extending to the b-quark sector, is obtained. The calculational result
strongly supports the tetraquark picture for the "exotic" states of
and .Comment: 13 pages,3 figures, 1 table, version to appear in EPJ
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