463 research outputs found
Superconductivity in a two dimensional extended Hubbard model
The Roth's two-pole approximation has been used by the present authors to
investigate the role of hybridization in the superconducting properties
of an extended Hubbard model. Superconductivity with singlet
-wave pairing is treated by following Beenen and Edwards
formalism. In this work, the Coulomb interaction, the temperature and the
superconductivity have been considered in the calculation of some relevant
correlation functions present in the Roth's band shift. The behavior of the
order parameter associated with temperature, hybridization, Coulomb interaction
and the Roth's band shift effects on superconductivity are studied.Comment: 14 pages, 8 figures, accepted for publication in European Physical
Journal
Coulomb parameters and photoemission for the molecular metal TTF-TCNQ
We employ density-functional theory to calculate realistic parameters for an
extended Hubbard model of the molecular metal TTF-TCNQ. Considering both intra-
and intermolecular screening in the crystal, we find significant longer-range
Coulomb interactions along the molecular stacks, as well as inter-stack
coupling. We show that the long-range Coulomb term of the extended Hubbard
model leads to a broadening of the spectral density, likely resolving the
problems with the interpretation of photoemission experiments using a simple
Hubbard model only.Comment: 4 pages, 2 figure
Infinite-dimensional -adic groups, semigroups of double cosets, and inner functions on Bruhat--Tits builldings
We construct -adic analogs of operator colligations and their
characteristic functions. Consider a -adic group , its subgroup , and the subgroup
embedded to diagonally. We show that double cosets
admit a structure of a semigroup, acts naturally in -fixed vectors
of unitary representations of . For each double coset we assign a
'characteristic function', which sends a certain Bruhat--Tits building to
another building (buildings are finite-dimensional); image of the distinguished
boundary is contained in the distinguished boundary. The latter building admits
a structure of (Nazarov) semigroup, the product in corresponds to a
point-wise product of characteristic functions.Comment: new version of the paper, 47pp, 3 figure
Measurement and simulation of the muon-induced neutron yield in lead
A measurement is presented of the neutron production rate in lead by high energy cosmic-ray muons at a depth of 2850m water equivalent (w.e.) and a mean muon energy of 260GeV. The measurement exploits the delayed coincidences between muons and the radiative capture of induced neutrons in a highly segmented tonne scale plastic scintillator detector. Detailed Monte Carlo simulations reproduce well the measured capture times and multiplicities and, within the dynamic range of the instrumentation, the spectrum of energy deposits. By comparing measurements with simulations of neutron capture rates a neutron yield in lead of (5.78_-_0_._2_8^+^0^.^2^1) x10^-^3neutrons/muon/(g/cm^2) has been obtained. Absolute agreement between simulation and data is of order 25%. Consequences for deep underground rare event searches are discussed.Peer Reviewe
Challenges of beta-deformation
A brief review of problems, arising in the study of the beta-deformation,
also known as "refinement", which appears as a central difficult element in a
number of related modern subjects: beta \neq 1 is responsible for deviation
from free fermions in 2d conformal theories, from symmetric omega-backgrounds
with epsilon_2 = - epsilon_1 in instanton sums in 4d SYM theories, from
eigenvalue matrix models to beta-ensembles, from HOMFLY to super-polynomials in
Chern-Simons theory, from quantum groups to elliptic and hyperbolic algebras
etc. The main attention is paid to the context of AGT relation and its possible
generalizations.Comment: 20 page
Exclusive photoproduction of pi degrees up to large values of Mandelstam variables s, t, and u with CLAS
Exclusive photoproduction cross sections have been measured for the process
with the Dalitz decay final state
using tagged photon energies in the range of GeV.
The complete angular distribution of the final state , for the entire
photon energy range up to large values of and , has been measured for
the first time. The data obtained show that the cross section , at
mid to large angles, decreases with energy as . This is in
agreement with the perturbative QCD quark counting rule prediction of . Paradoxically, the size of angular distribution of measured cross sections
is greatly underestimated by the QCD based Generalized Parton Distribution
mechanism at highest available invariant energy GeV. At the same
time, the Regge exchange based models for photoproduction are more
consistent with experimental data.Comment: 7 pages, 6 figure
Experimental and numerical analysis of short sisal fiber-cement composites produced with recycled matrix
"Published online: 02 Jan 2017"The proper use of renewable or recycled source materials can contribute
significantly to reducing the environmental impact of construction industry. In this
work, cement based composites reinforced with natural fibers were developed and their
mechanical behavior was characterized. To ensure the composite sustainability and
durability, the ordinary Portland cement matrix was modified by adding metakaolin and
the natural aggregate was substituted by 10% and 20% of recycled concrete aggregate.
Compression and splitting tensile tests indicated that mechanical strength did not seem
to be affected by recycled content. Flat sheets were cast in a self-compacted cement
matrix and bending tests were performed to determine the first crack, postpeak strength
and cracking behavior of the composites. The use of short sisal fiber as reinforcement of
recycled cement matrices results in a composite with multiple cracking and increment of
strength after first crack. The modeling of composites using finite element method
allowed to determine the tensile stress-strain behavior of material and to design possible
applications of this new sustainable material.This research was supported by CAPES (PVE Program: Project 047/2012) and CNPqinfo:eu-repo/semantics/publishedVersio
Two-pion Bose-Einstein correlations in central Pb-Pb collisions at = 2.76 TeV
The first measurement of two-pion Bose-Einstein correlations in central Pb-Pb
collisions at TeV at the Large Hadron Collider is
presented. We observe a growing trend with energy now not only for the
longitudinal and the outward but also for the sideward pion source radius. The
pion homogeneity volume and the decoupling time are significantly larger than
those measured at RHIC.Comment: 17 pages, 5 captioned figures, 1 table, authors from page 12,
published version, figures at
http://aliceinfo.cern.ch/ArtSubmission/node/388
Evidence of fatal skeletal injuries on Malapa Hominins 1 and 2
Malapa is one of the richest early hominin sites in Africa and the discovery site of the hominin
species, Australopithecus sediba. The holotype and paratype (Malapa Hominin 1 and 2, or MH1 and
MH2, respectively) skeletons are among the most complete in the early hominin record. Dating to
approximately two million years BP, MH1 and MH2 are hypothesized to have fallen into a natural pit
trap. All fractures evident on MH1 and MH2 skeletons were evaluated and separated based on wet
and dry bone fracture morphology/characteristics. Most observed fractures are post-depositional, but
those in the right upper limb of the adult hominin strongly indicate active resistance to an impact,
while those in the juvenile hominin mandible are consistent with a blow to the face. The presence of
skeletal trauma independently supports the falling hypothesis and supplies the first evidence for the
manner of death of an australopith in the fossil record that is not attributed to predation or natural
death.The National Research Foundation of South Africa (NRF)http://www.nature.com/scientificreportsam201
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