7,561 research outputs found
A three dimensional model of the Venusian thermosphere with superrotation
An improved three dimensional spectral model of the thermosphere of Venus is described. The model solves the Navier-Stokes equations and includes nonlinear effects for an arbitrary number of atmospheric species. A two dimensional axisymmetric model of the superrotation of the thermosphere is also presented. This model addresses the Pioneer-Venus mission finding, which suggested the thermospheric rotation rate to be much higher than that of the planet as seen from the asymmetric distribution of hydrogen and helium. Both models include the effects of an anisotropic eddy diffusion that is consistent with atmospheric mixing length theory
Untangling the Conceptual Isssues Raised in Reydon and Scholz’s Critique of Organizational Ecology and Darwinian Populations
Reydon and Scholz raise doubts about the Darwinian status of organizational ecology by arguing that Darwinian principles are not applicable to organizational populations. Although their critique of organizational ecology’s typological essentialism is correct, they go on to reject the Darwinian status of organizational populations. This paper claims that the distinction between replicators and interactors, raised in modern philosophy of biology but not discussed by Reydon and Scholz, points the way forward for organizational ecologists. It is possible to conceptualise evolving Darwinian populations providing the inheritance mechanism is appropriately specified. By this approach, adaptation and selection are no longer dichotomised, and the evolutionary significance of knowledge transmission is highlightedPeer reviewe
Amorphous thin film growth: theory compared with experiment
Experimental results on amorphous ZrAlCu thin film growth and the dynamics of
the surface morphology as predicted from a minimal nonlinear stochastic
deposition equation are analysed and compared. Key points of this study are (i)
an estimation procedure for coefficients entering into the growth equation and
(ii) a detailed analysis and interpretation of the time evolution of the
correlation length and the surface roughness. The results corroborate the
usefulness of the deposition equation as a tool for studying amorphous growth
processes.Comment: 7 pages including 5 figure
The effect of Wilson line moduli on CP-violation by soft supersymmetry breaking terms
The CP-violating phases in the soft supersymmetry-breaking sector in orbifold
compactifications with a continuous Wilson line are investigated. In this case
the modular symmetry is the Siegel modular group of genus two. In
particular, we study the case that the hidden sector non-perturbative
superpotential is determined by the Igusa cusp form of modular
weight 12. The effect of large non-perturbative corrections to the dilaton
K\"ahler potential on the resulting CP-violating phases is also investigated.Comment: LaTeX file, 12 pages plus 7 figures, to appear in Phys.Lett.
Phonon anomalies and charge dynamics in Fe_{1-x}Cu_{x}Cr_{2}S_{4} single crystals
A detailed investigation of phonon excitations and charge carrier dynamics in
single crystals of Fe_{1-x}Cu_{x}Cr_{2}S_{4} (x = 0, 0.2, 0.4, 0.5) has been
performed by using infrared spectroscopy. In FeCr_{2}S_{4} the phonon
eigenmodes are strongly affected by the onset of magnetic order. Despite
enhanced screening effects, a continuous evolution of the phonon excitations
can be observed in the doped compounds with x = 0.2 (metallic) and x = 0.4, 0.5
(bad metals), but the effect of magnetic ordering on the phonons is strongly
reduced compared to x = 0. The Drude-like charge-carrier contribution to the
optical conductivity in the doped samples indicates that the colossal
magneto-resistance effect results from the suppression of spin-disorder
scattering.Comment: 8 pages, 6 figure
eingesetzt wird. A. nutzt dazu die Boolesche Logik (Algebra) mit den Operatoren AND, OR und NOT. Die logischen Operatoren ergeben folgende Mengen: A AND B
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Spin-orbiton and quantum criticality in FeSc2S4
In FeSc2S4 spin-orbital exchange competes with strong spin-orbit coupling,
suppressing long-range spin and orbital order and, hence, this material
represents one of the rare examples of a spin-orbital liquid ground state.
Moreover, it is close to a quantum-critical point separating the ordered and
disordered regimes. Using THz and FIR spectroscopy we study low-lying
excitations in FeSc2S4 and provide clear evidence for a spin-orbiton, an
excitation of strongly entangled spins and orbitals. It becomes particularly
well pronounced upon cooling, when advancing deep into the quantum-critical
regime. Moreover, indications of an underlying structureless excitation
continuum are found, a possible signature of quantum criticality.Comment: 11 pages, 11 figures (including 4 pages and 5 figures in Supplemental
Material). Revised version according to suggestions of referees. Phys. Rev. B
(in press
Optical conductivity in multiferroic GaVS and GeVS: Phonons and electronic transitions
We report on optical spectroscopy on the lacunar spinels GaVS and
GeVS in the spectral range from 100 to 23000 cm and for
temperatures from 5 to 300 K. These multiferroic spinel systems reveal
Jahn-Teller driven ferroelectricity and complex magnetic order at low
temperatures. We study the infrared-active phonon modes and the low-lying
electronic excitations in the cubic high-temperature phase, as well as in the
orbitally and in the magnetically ordered low-temperature phases. We compare
the phonon modes in these two compounds, which undergo different
symmetry-lowering Jahn-Teller transitions into ferroelectric and orbitally
ordered phases, and exhibit different magnetic ground states. We follow the
splitting of the phonon modes at the structural phase transition and detect
additional splittings at the onset of antiferromagnetic order in GeVS.
We observe electronic transitions within the -derived bands of the V
clusters and document a significant influence of the structural and magnetic
phase transitions on the narrow electronic band gaps.Comment: 12 pages, 10 figure
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