25,258 research outputs found
Serita Frey Professor of Natural Resources and the Environment (COLSA) travels to Argentina
The Center for International Education provided partial financial support for my sabbatical in Argentina during fall 2015. The specific goals of my trip to Argentina were to (1) visit and interact with a research group at the University of Buenos Aires, (2) explore potential research sites in the Patagonian steppe in southern Argentina, and (3) write several manuscripts and proposals
Serita Frey, Associate Professor of Natural Resources and the Environment, travels to Costa Rica
Studies of the major planet satellite systems
A summary is presented of the available data on the satellites of the major planets, including the currently most plausible models for several observed phenomena, for the planning of spacecraft missions to these objects. Some of the important questions likely to be solved by flyby and/or orbital missions to the giant planets are detailed, the importance of these studies to our understanding of the solar system as a whole is indicated
Stiff Polymers, Foams and Fiber Networks
We study the elasticity of fibrous materials composed of generalized stiff
polymers. It is shown that in contrast to cellular foam-like structures affine
strain fields are generically unstable. Instead, a subtle interplay between the
architecture of the network and the elastic properties of its building blocks
leads to intriguing mechanical properties with intermediate asymptotic scaling
regimes. We present exhaustive numerical studies based on a finite element
method complemented by scaling arguments.Comment: 4 pages, 5 figure
Into the central 10 pc of the most distant known radio quasar. VLBI imaging observations of J1429+5447 at z=6.21
Context: There are about 60 quasars known at redshifts z>5.7 to date. Only
three of them are detected in the radio above 1 mJy flux density at 1.4 GHz
frequency. Among them, J1429+5447 (z=6.21) is the highest-redshift radio quasar
known at present. These rare, distant, and powerful objects provide important
insight into the activity of the supermassive black holes in the Universe at
early cosmological epochs, and on the physical conditions in their environment.
Aims: We studied the compact radio structure of J1429+5447 on the
milli-arcsecond (mas) angular scale, in order to compare the structural and
spectral properties with those of other two z~6 radio-loud quasars, J0836+0054
(z=5.77) and J1427+3312 (z=6.12). Methods: We performed Very Long Baseline
Interferometry (VLBI) imaging observations of J1429+5447 with the European VLBI
Network (EVN) at 1.6 GHz on 2010 June 8, and at 5 GHz on 2010 May 27. Results:
Based on its observed radio properties, the compact but somewhat resolved
structure on linear scales of <100 pc, and the steep spectrum, the quasar
J1429+5447 is remarkably similar to J0836+0054 and J1427+3312. To answer the
question whether the compact steep-spectrum radio emission is a "universal"
feature of the most distant radio quasars, it is essential to study more, yet
to be discovered radio-loud active galactic nuclei at z>6.Comment: 4 pages, 2 figures, accepted for publication as a Letter to the
editor in Astronomy & Astrophyic
The use of happiness research for public policy
Research on happiness tends to follow a "benevolent dictator" approach where politicians pursue people's happiness. This paper takes an antithetic approach based on the insights of public choice theory. First, we inquire how the results of happiness research may be used to improve the choice of institutions. Second, we show that the policy approach matters for the choice of research questions and the kind of knowledge happiness research aims to provide. Third, we emphasize that there is no shortcut to an optimal policy maximizing some happiness indicator or social welfare function since governments have an incentive to manipulate this indicator
Composite magnetic dark matter and the 130 GeV line
We propose an economical model to explain the apparent 130 GeV gamma ray
peak, found in the Fermi/LAT data, in terms of dark matter annihilation through
a dipole moment interaction. The annihilating dark matter particles represent a
subdominant component, with mass density 7-17% of the total DM density; and
they only annihilate into gamma gamma, gamma Z, and ZZ, through a magnetic (or
electric) dipole moment. Annihilation into other standard model particles is
suppressed, due to a mass splitting in the magnetic dipole case, or to p-wave
scattering in the electric dipole case. In either case, the observed signal
requires a dipole moment of strength mu ~ 2/TeV. We argue that composite models
are the preferred means of generating such a large dipole moment, and that the
magnetic case is more natural than the electric one. We present a simple model
involving a scalar and fermionic techniquark of a confining SU(2) gauge
symmetry. We point out some generic challenges for getting such a model to
work. The new physics leading to a sufficiently large dipole moment is below
the TeV scale, indicating that the magnetic moment is not a valid effective
operator for LHC physics, and that production of the strongly interacting
constituents, followed by techni-hadronization, is a more likely signature than
monophoton events. In particular, 4-photon events from the decays of bound
state pairs are predicted.Comment: 8 pages, 5 figures; v2. fixed typos, clarifications, added discussion
of model-building challenges; v3. clarifications added, discussion improved,
accepted for publication in PR
Comparative planetology: Significance for terrestrial geology
The crustal evolution of the terrestrial planets increase in complexity and duration with increasing size and mass of the planet. The lunar and mercurian surfaces are largely the result of intense, post-differentiation impact bombardment and subsequent volcanic filling of major impact basins. Mars, being larger, has evolved further: crustal uplifts, rifting, and shield volcanoes have begun to modify its largely Moon-like surface. The Earth is the large end-number of this sequence, where modern plate tectonic processes have erased the earlier lunar and martian type of surfaces. Fundamental problems of the origin of terrestrial continents, ocean basins, and plate tectonics are now addressed within the context of the evolutionary pattern of the terrestrial planets
Proposed satellite laser ranging and very long baseline interferometry sites for crustal dynamics investigations
Recommendations are presented for a global network of 125 sites for geodetic measurements by satellite laser ranging and very long baseline interferometry. The sites were proposed on the basis of existing facilities and scientific value for investigation of crustal dynamics as related to earthquake hazards. Tectonic problems are discussed for North America peripheral regions and for the world. The sites are presented in tables and maps, with bibliographic references
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