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Implementation of runtime visualization for TOUGH2
This paper is a summary of the work conducted for the TOUGH2 runtime visualization in support of the modeling of the unsaturated flow regime at Yucca Mountain
Chiral Baryon Fields in the QCD Sum Rule
We study the structure of local baryon fields using the method of QCD sum
rule. We only consider the single baryon fields and calculate their operator
product expansions. We find that the octet baryon fields belonging to the
chiral representations [(3,3*)+(3*,3)] and [(8,1)+(1,8)] and the decuplet
baryon fields belonging to the chiral representations [(3,6)+(6,3)] lead to the
baryon masses which are consistent with the experimental data of ground baryon
masses. We also calculate their decay constants, check our normalizations for
baryon fields in PRD81:054002(2010) and find that they are well-defined.Comment: 12 pages, 6 figure, 1 table, accepted by EPJ
Effects of Mn and Ti doping on superconductivity and charge ordering in NaxCoO2 system
The superconductivity in Na0.3Co1-xMxO2.1.3H2O and the charge ordering in
Na0.5Co1-xMxO2 have been investigated for M = Mn and Ti substituting for Co. We
have first successfully synthesized the single-phase Na0.7Co1-xMxO2(M= Mn and
Ti) materials with 0 < = x < = 0.1, then we obtained Na0.5Co1-xMxO2 (0 < = x <
= 0.1, M = Mn and Ti) by Na deintercalation and Na0.3Co1-xMxO2.1.3H2O (0 < = x
< = 0.1, M = Mn and Ti) by an additional water intercalations. X-ray
diffraction measurements revealed that all samples are single-phase materials,
their lattice parameters depend systematically on the Ti and Mn contents.
Measurements of physical properties indicate that the superconductivity in
Na0.3Co1-xMxO2.1.3H2O is suppressed evidently by Co-site doping and killed at x
= 0.02 for Mn doping and x = 0.01 for Ti doping. Charge ordering and magnetic
properties in Na0.5Co1-xMxO2 were also influenced by M-atom doping.Comment: 22 pages, 3 tables, and 6 figure
Microwave and terahertz dielectric properties of MgTiO3–CaTiO3 ceramics
The THz dielectric properties of MgTiO3–CaTiO3 ceramics are reported. The ceramics were prepared via a solid-state reaction route and the sintering conditions were optimized to obtain ceramics with high permittivity and low loss in the terahertz frequency domain. The amount of impurities (MgTi2O5) and grain size increased with increasing sintering temperature. The dielectric properties improved with increasing density, and the best terahertz dielectric performance was obtained at 1260 °C, with a permittivity of 17.73 and loss of 3.07×10−3. Ceramics sintered above 1260 °C showed a sharp increase in loss, which is ascribed to an increase in the impurity content
Phase separation and ferroelectric ordering in charge frustrated LuFe2O4-x
The transmission electron microscopy observations of the charge ordering (CO)
which governs the electronic polarization in LuFe2O4-x clearly show the
presence of a remarkable phase separation at low temperatures. Two CO ground
states are found to adopt the charge modulations of Q1 = (1/3, 1/3, 0) and Q2 =
(1/3 + y, 1/3 + y, 3/2), respectively. Our structural study demonstrates that
the incommensurately Q2-modulated state is chiefly stable in samples with
relatively lower oxygen contents. Data from theoretical simulations of the
diffraction suggest that both Q1- and Q2-modulated phases have ferroelectric
ordering. The effects of oxygen concentration on the phase separation and
electric polarization in this layered system are discussed.Comment: 11 pages, 5 figure
An effective local routing strategy on the BA network
In this paper, We propose a effective routing strategy on the basis of the
so-called nearest neighbor search strategy by introducing a preferential
delivering exponent alpha. we assume that the handling capacity of one vertex
is proportional to its degree when the degree is smaller than a cut-off value
, and is infinite otherwise. It is found that by tuning the parameter alpha,
the scale-free network capacity measured by the order parameter is considerably
enhanced compared to the normal nearest-neighbor strategy. Traffic dynamics
both near and far away from the critical generating rate R_c are discussed. We
also investigate R_c as functions of m (connectivity density), K (cutoff
value). Due to the low cost of acquiring nearest-neighbor information and the
strongly improved network capacity, our strategy may be useful and reasonable
for the protocol designing of modern communication networks.Comment: 9 pages, 5 figure
Structural Phase Transitions and Sodium Ordering in Na0.5CoO2: a Combined Electron Diffraction and Raman Spectroscopy Study
The nonstoichiometric NaxCoO2 system exhibits extraordinary physical
properties that correlate with temperature and Na concentration in its layered
lattice without evident long-range structure modification when conventional
crystallographic techniques are applied. For instance, Na0.7CoO2, a
thermodynamically stable phase, shows large thermoelectric power;
water-intercalated Na0.33CoO2.1.3H2O is a newly discovered superconductor with
Tc ~ 4K, and Na0.5CoO2 exhibits an unexpected charge ordering transition at
around Tco ~ 55 K. Recent studies suggest that the transport and magnetic
properties in the NaxCoO2 system strongly depend on the charge carrier density
and local structural properties. Here we report a combined variable temperature
transmission electron microscopy and Raman scattering investigation on
structural transformations in Na0.5CoO2 single crystals. A series of structural
phase transitions in the temperature range from 80 K to 1000 K are directly
identified and the observed superstructures and modulated phases can be
interpreted by Na-ordering. The Raman scattering measurements reveal phase
separation and a systematic evolution of active modes along with phase
transitions. Our work demonstrates that the high mobility and ordering of
sodium cations among the CoO2 layers are a key factor for the presence of
complex structural properties in NaxCoO2 materials, and also demonstrate that
the combination of electron diffraction and Raman spectroscopy measurements is
an efficient way for studying the cation ordering and phase transitions in
related systems.Comment: 22 pages, 5 figure
Direct Measurements of the Branching Fractions for and and Determinations of the Form Factors and
The absolute branching fractions for the decays and
are determined using singly
tagged sample from the data collected around 3.773 GeV with the
BES-II detector at the BEPC. In the system recoiling against the singly tagged
meson, events for and events for decays are observed. Those yield
the absolute branching fractions to be and . The
vector form factors are determined to be
and . The ratio of the two form
factors is measured to be .Comment: 6 pages, 5 figure
Measurements of the observed cross sections for exclusive light hadrons containing at , 3.650 and 3.6648 GeV
By analyzing the data sets of 17.3, 6.5 and 1.0 pb taken,
respectively, at , 3.650 and 3.6648 GeV with the BES-II
detector at the BEPC collider, we measure the observed cross sections for
, , ,
and at the three energy
points. Based on these cross sections we set the upper limits on the observed
cross sections and the branching fractions for decay into these
final states at 90% C.L..Comment: 7 pages, 2 figure
Partial wave analysis of J/\psi \to \gamma \phi \phi
Using events collected in the BESII detector, the
radiative decay is
studied. The invariant mass distribution exhibits a near-threshold
enhancement that peaks around 2.24 GeV/.
A partial wave analysis shows that the structure is dominated by a
state () with a mass of
GeV/ and a width of GeV/. The
product branching fraction is: .Comment: 11 pages, 4 figures. corrected proof for journa
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