4,197 research outputs found
Micro-bias and macro-performance
We use agent-based modeling to investigate the effect of conservatism and
partisanship on the efficiency with which large populations solve the density
classification task--a paradigmatic problem for information aggregation and
consensus building. We find that conservative agents enhance the populations'
ability to efficiently solve the density classification task despite large
levels of noise in the system. In contrast, we find that the presence of even a
small fraction of partisans holding the minority position will result in
deadlock or a consensus on an incorrect answer. Our results provide a possible
explanation for the emergence of conservatism and suggest that even low levels
of partisanship can lead to significant social costs.Comment: 11 pages, 5 figure
Satellite Galaxies and Fossil Groups in the Millennium Simulation
We use a semianalytic galaxy catalogue constructed from the Millennium
Simulation to study the satellites of isolated galaxies in the LCDM cosmogony.
This sample (~80,000$ bright primaries, surrounded by ~178,000 satellites)
allows the characterization, with minimal statistical uncertainty, of the
dynamical properties of satellite/primary galaxy systems in a LCDM universe. We
find that, overall, the satellite population traces the dark matter rather
well: its spatial distribution and kinematics may be approximated by an NFW
profile with a mildly anisotropic velocity distribution. Their spatial
distribution is also mildly anisotropic, with a well-defined ``anti-Holmberg''
effect that reflects the misalignment between the major axis and angular
momentum of the host halo. The isolation criteria for our primaries picks not
only galaxies in sparse environments, but also a number of primaries at the
centre of ''fossil'' groups. We find that the abundance and luminosity function
of these unusual systems are in reasonable agreement with the few available
observational constraints. We recover the expected L_{host} \sigma_{sat}^3
relation for LCDM models for truly-isolated primaries. Less strict primary
selection, however, leads to substantial modification of the scaling relation.
Our analysis also highlights a number of difficulties afflicting studies that
rely on blind stacking of satellite systems to constrain the mean halo mass of
the primary galaxies.Comment: 18 pages, 14 figures, MNRAS in press. Accepted version with minor
changes. Version with high resolution figures available at:
http://www.astro.uvic.ca/~lsales/SatPapers/SatPapers.htm
Lattice dynamics and reduced thermal conductivity of filled skutterudites
The great reduction in thermal conductivity of skutterudites upon filling the
``void'' sites with Rare Earth (RE) ions is key to their favorable
thermoelectric properties but remains to be understood. Using lattice dynamic
models based on first principles calculations, we address the most popular
microscopic mechanism, reduction via rattling ions. The model withstands
inelastic neutron scattering and specific heat measurements, and refutes
hypotheses of an anharmonic RE potential and of two distinct localized RE
vibrations of disparate frequencies. It does indicate a strong hybridization
between bare La vibrations and certain Sb-like phonon branches, suggesting
anharmonic scattering by harmonic RE motions as an important mechanism for
suppression of heat conductivity.Comment: modified version resubmitted to PRB. Results unchanged, text changed
substantiall
Superconducting magnesium diboride films on Silicon with Tc0 about 24K grown via vacuum annealing from stoichiometric precursors
Superconducting magnesium diboride films with Tc0 ~ 24 K and sharp transition
\~ 1 K were successfully prepared on silicon substrates by pulsed laser
deposition from a stoichiometric MgB2 target. Contrary to previous reports,
anneals at 630 degree and a background of 2x10^(-4) torr Ar/4%H2 were performed
without the requirement of Mg vapor or an Mg cap layer. This integration of
superconducting MgB2 films on silicon may thus prove enabling in
superconductor-semiconductor device applications. Images of surface morphology
and cross-section profiles by scanning electron microscopy (SEM) show that the
films have a uniform surface morphology and thickness. Energy dispersive
spectroscopy (EDS) reveals these films were contaminated with oxygen,
originating either from the growth environment or from sample exposure to air.
The oxygen contamination may account for the low Tc for those in-situ annealed
films, while the use of Si as the substrate does not result in a decrease in Tc
as compared to other substrates.Comment: 5 pages, 4 figures, 15 references; due to file size limit, images
were blure
Valorización energética de la biomasa : aplicación en industrias del sector agroalimentario
La utilización de la biomasa proveniente del sector agroalimentario como una fuente de energía renovable es de gran interés en la actualidad. Ésta puede generar energía, a través de procesos tanto termoquímicos como bioquímicos, susceptible de utilizarse en forma de calor, energía mecánica o electricidad, y en diferentes estados de agregación: sólida, líquida o gas.
La Digestión Anaerobia de vertidos de destilerías vínicas es un ejemplo idóneo de los procesos bioquímicos de conversión de la biomasa para obtener energía, ya que la vinaza se genera en el propio proceso de obtención del alcohol etílico (destilación de vinos y subproductos de la vinificación) producido por fermentación de una disolución azucarada y el metano se genera en la digestión anaerobia del residuo de la destilación.
En este trabajo se estudia el funcionamiento y operación de diferentes tecnologías anaerobias susceptibles de ser utilizadas para la degradación de vertidos de destilerías vínicas (vinazas de vino) en condiciones anaerobias termofílicas (55°C), estableciéndose una comparación entre procesos con biomasa en suspensión y sistemas con biomasa adherida de tipo filtro anaerobio. En este último caso, además, se comparan diferentes tipos de materiales soportes y se analiza el efecto de la tasa de recirculación sobre el proceso.____________________________________Nowadays, the use of food industry biomass as a resource of renewable energy is a very interesting management alternative. Biomass can be converted to energy via thermal, biochemical and mechanical processes. This energy can be used like heat, mechanic o electric energies, and in different aggregation states (solid, liquid or gaseous).
Anaerobic digestion of wine distilleries wastewater (vinasses) is a suitable example of biochemical conversion process of biomass to obtain energy. Vinasses are generated in the obtaining of ethylic alcohol on wine and wine-subproducts distillation process. This alcohol is previously generated in the biological fermentation of sugars from must. Subsequently, the biogas, mainly methane, can be obtained from anaerobic digestion of the residue of alcohol distillation, the vinasses.
This work presents the main operational conditions of different anaerobic technologies used for anaerobic digestion of wine distilleries wastewater (vinasses) in the thermophilic range of temperature (55ºC). This study makes the comparison between technologies that used suspended biomass and fixed-film biorreactors (anaerobic filters). In the anaerobic filter technology there is a comparison between different support media and different recirculation rate regimes and its influence in the process
Orbital-resolved Soft X-Ray Spectroscopy in NaV2O5
We demonstrate that angle-resolved soft x-ray spectroscopy can resolve
absorption by inequivalent oxygen sites and by different orbitals belonging to
the same site in NaV2O5. By rotating the polarization direction, we see a
dramatic change in the absorption spectra at the oxygen K edge. Our theory
identifies the detailed composition of the spectra and predicts a correct
energy-ordering of the orbitals of three inequivalent oxygen atoms. Because
different orbitals dominate absorption spectra at different energies and
angles, one can excite at a specific site and ``orbital''. In contrast,
absorption at the vanadium L edge does not show large changes when varying the
polarization direction. The reason for this is that different excitation
channels (involving different initial states for the excited electron) overlap
in energy and vary in compensating ways, obscuring each channel's sensitive
polarization dependence.Comment: 12 pages, 6 figures, accepted to PR
NMR measurements of intrinsic spin susceptibility in LaFeAsO(0.9)F(0.1)
We will probe the intrinsic behavior of spin susceptibility chi_(spin) in the
LaFeAsO(1-x)F(x) superconductor (x ~ 0.1, Tc ~ 27K) using 19-F and 75-As NMR
techniques. Our new results firmly establish the pseudo-gap behavior with
Delta_(PG)/kB ~ 140K. The estimated magnitude of chi_(spin) at 290K,
~1.8x10^(-4) [emu/mol-Fe], is approximately twice larger than that in high Tc
cuprates. We also show that chi_(spin) levels off below ~50K down to Tc.Comment: Invited paper to the Proceedings of the International Symposium on
Iron-oxypnictide Superconductors (June 28-29, 2008, Tokyo). J. Phys. Soc.
Jpn. Suppl. (in press
Anisotropic thermal expansion of Fe1.06Te and FeTe0.5Se0.5 single crystals
Heat capacity and anisotropic thermal expansion was measured for Fe1.06Te and
FeTe0.5Se0.5 single crystals. Previously reported phase transitions are clearly
seen in both measurements. In both cases the thermal expansion is anisotropic.
The uniaxial pressure derivatives of the superconducting transition temperature
in FeTe0.5Se0.5 inferred from the Ehrenfest relation have opposite signs for
in-plane and c-axis pressures. Whereas the Gruneisen parameters for both
materials are similar and only weakly temperature-dependent above ~ 80 K, at
low temperatures (in the magnetically ordered phase) the magnetic contribution
to the Gruneisen parameter in Fe1.06Te is significantly larger than electron
and phonon contributions combined
Electronic Structure and Thermoelectric Prospects of Phosphide Skutterudites
The prospects for high thermoelectric performance in phosphide skutterudites
are investigated based on first principles calculations. We find that
stoichiometric CoP_3 differs from the corresponding arsenide and antimonide in
that it is metallic. As such the band structure must be modified if high
thermopowers are to be achieved. In analogy to the antimonides it is expected
that this may be done by filling with La. Calculations for LaFe_4P_12 show that
a gap can in fact be opened by La filling, but that the valence band is too
light to yield reasonable p-type thermopowers at appropriate carrier densities;
n-type La filled material may be more favorable.Comment: 3 pages, 3 figures, 1 tabl
- …
