39,510 research outputs found
Transverse Momentum Distribution and Elliptic Flow of Charged Hadrons in + collisions at GeV using HYDJET++
Recent experimental observations of the charged hadron properties in
collisions at GeV contradict many of the theoretical models of particle
production including two-component Monte Carlo Glauber model. The experimental
results show a small correlation between the charged hadron properties and the
initial geometrical configurations (e.g. body-body, tip-tip etc.) of
collisions. In this article, we have modified the Monte Carlo HYDJET++ model to
study the charged hadron production in collisions at GeV
center-of-mass energy in tip-tip and body-body initial configurations. We have
modified the hard as well as soft production processes to make this model
suitable for collisions. We have calculated the pseudorapidity
distribution, transverse momentum distribution and elliptic flow distribution
of charged hadrons with different control parameters in various geometrical
configurations possible for collision. We find that HYDJET++ model
supports a small correlation between the various properties of charged hadrons
and the initial geometrical configurations of collision. Further, the
results obtained in modified HYDJET++ model regarding and
elliptic flow () suitably matches with the experimental data of
collisions in minimum bias configuration.Comment: 29 pages, 25 figures. Accepted for Publication in EPJ
Coupling nanomechanical cantilevers to dipolar molecules
We investigate the coupling of a nanomechanical oscillator in the quantum
regime with molecular (electric) dipoles. We find theoretically that the
cantilever can produce single-mode squeezing of the center-of-mass motion of an
isolated trapped molecule and two-mode squeezing of the phonons of an array of
molecules. This work opens up the possibility of manipulating dipolar crystals,
which have been recently proposed as quantum memory, and more generally, is
indicative of the promise of nanoscale cantilevers for the quantum detection
and control of atomic and molecular systems.Comment: 3 figures, 4page
Nonlocal density functionals and the linear response of the homogeneous electron gas
The known and usable truly nonlocal functionals for exchange-correlation
energy of the inhomogeneous electron gas are the ADA (average density
approximation) and the WDA (weighted density approximation). ADA, by design,
yields the correct linear response function of the uniform electron gas. WDA is
constructed so that it is exact in the limit of one-electron systems. We derive
an expression for the linear response of the uniform gas in the WDA, and
calculate it for several flavors of WDA. We then compare the results with the
Monte-Carlo data on the exchange-correlation local field correction, and
identify the weak points of conventional WDA in the homogeneous limit. We
suggest how the WDA can be modified to improve the response function. The
resulting approximation is a good one in both opposite limits, and should be
useful for practical nonlocal density functional calculations.Comment: 4 pages, two eps figures embedde
Unexplored photoluminescence from bulk and mechanically exfoliated few layers of Bi2Te3
We report the exotic photoluminescence (PL) behaviour of 3D topological
insulator Bi2Te3 single crystals grown by customized self-flux method and
mechanically exfoliated few layers (18 plus minus 2 nm)/thin flakes obtained by
standard scotch tape method from as grown Bi2Te3 crystals.The experimental PL
studies on bulk single crystal and mechanically exfoliated few layers of Bi2Te3
evidenced a broad red emission in the visible region. These findings are in
good agreement with our theoretical results obtained using the ab initio
density functional theory framework.Comment: Main MS (17 Pages text including 4 Figs): Suppl. info. (4 pages);
Accepted Scientific Report
Generalized Electromagnetic fields in Chiral Medium
The time dependent Dirac-Maxwell's Equations in presence of electric and
magnetic sources are written in chiral media and the solutions for the
classical problem are obtained in unique simple and consistent manner. The
quaternion reformulation of generalized electromagnetic fields in chiral media
has also been developed in compact, simple and consistent manner
- …