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41.
A. Mirone S. S. Dhesi G. van der Laan 《The European Physical Journal B - Condensed Matter and Complex Systems》2006,53(1):23-28
Orbital ordering (OO) in La0.5Sr1.5MnO4 has been
studied using soft X-ray resonant diffraction (SXRD) at the Mn L2,3 edges
in combination with many-body cluster calculations. The SXRD intensity is modelled in second quantization using a
small planar cluster consisting of a central active Mn site with first-neighbour shells comprising O and Mn sites.
The effective Hamiltonian includes Slater-Koster parameters and charge transfer and electron correlation
energies obtained from previous measurements on manganites. The
energy dependence of the SXRD OO peak is calculated using
the Jahn-Teller distortions of the oxygen octahedra and in-plane spin correlations as adjustable parameters. These contributions
are clearly distinguished above the Néel temperature with a good spectroscopic agreement.
The results also suggest a significant charge separation between the Mn sites. 相似文献
42.
In this paper, various implementations of the analytic Hartree–Fock and hybrid density functional energy second derivatives are studied. An approximation-free four-centre implementation is presented, and its accuracy is rigorously analysed in terms of self-consistent field (SCF), coupled-perturbed SCF (CP-SCF) convergence and prescreening criteria. The CP-SCF residual norm convergence threshold turns out to be the most important of these. Final choices of convergence thresholds are made such that an accuracy of the vibrational frequencies of better than 5 cm?1 compared to the numerical noise-free results is obtained, even for the highly sensitive low frequencies (<100–200 cm?1). The effects of the choice of numerical grid for density functional exchange–correlation integrations are studied and various weight derivative schemes are analysed in detail. In the second step of the work, approximations are introduced in order to speed up the computation without compromising its accuracy. To this end, the accuracy and efficiency of the resolution of identity approximation for the Coulomb terms and the semi-numerical chain of spheres approximation to the exchange terms are carefully analysed. It is shown that the largest performance improvements are realised if either Hartree–Fock exchange is absent (pure density functionals) and otherwise, if the exchange terms in the CP-SCF step of the calculation are approximated by the COSX method in conjunction with a small integration grid. Default values for all the involved truncation parameters are suggested. For vancomycine (176 atoms and 3593 basis functions), the RIJCOSX Hessian calculation with the B3LYP functional and the def2-TZVP basis set takes ~3 days using 16 Intel® Xeon® 2.60GHz processors with the COSX algorithm having a net parallelisation scaling of 11.9 which is at least ~20 times faster than the calculation without the RIJCOSX approximation. 相似文献
43.
G. Albinet J.M. Debierre P. Knauth C. Lambert L. Raymond 《The European Physical Journal B - Condensed Matter and Complex Systems》2001,22(4):421-427
We describe a two-dimensional (2D) and a three-dimensional (3D) percolation model for ionic conductor-insulator composites
such as copper(I) bromide-titanium dioxide (CuBr-TiO2) or lithium iodide-alumina (LiI-Al2O3). These composites present an enhanced conductivity closely related to the insulator concentration. This effect is explained
by the formation of highly conducting space charge regions near the phase boundaries which are represented by good conductor
bonds. Our numerical model takes into account grain size and correlation effects. The dimension has a leading role for the
conduction properties. In the 2D case, the good conductor bonds do not percolate, whatever the insulator concentration, and
the maximum conductivity of the composite samples is of the same order as that of the ionic conductor grains. The behavior
of the system is very different in the 3D case where, for a large domain of composition, the good conductors percolate through
the regions between the conductor grains. For the CuBr-TiO2 composites the conductivity versus composition curve is bell-shaped. Conversely, in the LiI-Al2O3 system, a linear relation between the conductivity and the insulator volume fraction is obtained in the experiments. Our
model gives a plausible interpretation of the conductivity in both systems.
Received 10 April 2001 相似文献
44.
Summary For very anisotropic metallic and semiconducting systems it is shown that the electrical conductivity in the direction of
high effective mass decreases as the number of electrons in the conduction band grows. In the other directions the conductivity
behaves normally.
Riassunto Si mostra che, per sistemi semiconduttori e metallici anisotropi, la conduttività elettrica nella direzione di massa altamente efficace diminuisce all'aumentare del numero di elettroni nella banda di conduzione. Nelle altre direzioni la conduttività si comporta normalmente.
Резюме Для очень анизотропных металлических и полупроводниковых систем показывается, что электропропроводность в направлении большой эффективной массы уменьшается, когда число электронов в зоне проводимости увеличивается. В других направлениях проводимость ведет себя нормальным образом.相似文献
45.
46.
Subba Reddy ChV Jin AP Zhu QY Mai LQ Chen W 《The European physical journal. E, Soft matter》2006,19(4):471-476
A sodium ion-conducting polymer electrolyte based on polyvinyl pyrrolidone (PVP) complexed with NaClO4 was prepared using the solution-cast technique. The cathode film of V2O5 xerogel modified with polyvinyl pyrrolidone was prepared using the sol-gel method. Investigations were conducted using X-ray
diffractometry (XRD), Fourier transformation infrared (FT-IR) spectroscopy. The ionic conductivity and transference number
measurements were performed to characterize the polymer electrolyte for battery applications. The transference number data
indicated that the conducting species in these electrolytes are the anions. Using the electrolyte, electrochemical cells with
a configuration Na/(PVP + NaClO4)/V2O5 modified by (PVP) were fabricated and their discharge profiles studied. 相似文献
47.
Summary We use the Sticky Electrolyte Model, which we solved before in PY/MSA, to obtain the equation of state of a charge colloid
taking into account both sticky and charge contribution.
Paper presented at the I International Conference on Scaling Concepts and Complex Fluids, Copanello, Italy, July 4–8, 1994. 相似文献
48.
P. Nozières F. Pistolesi S. Balibar 《The European Physical Journal B - Condensed Matter and Complex Systems》2001,24(3):387-394
We consider the shape of crystals which are soft in the sense that their elastic modulus μ is small compared to their surface
tension γ, more precisely μa < γ where a is the lattice spacing. We show that their surface steps penetrate inside the crystal as edge dislocations. As a consequence,
these steps are broad with a small energy which we calculate. We also calculate the elastic interaction between steps a distance
d apart, which is a 1/d
2 repulsion. We finally calculate the roughening temperatures of successive facets in order to compare with the remarkable
shapes of lyotropic crystals recently observed by Pieranski et al. [#!Pieranski!#,#!EPJ!#]. Good agreement is found.
Received 25 June 2001 相似文献
49.
A. Komnik R. Egger 《The European Physical Journal B - Condensed Matter and Complex Systems》2001,19(2):271-280
We study nonlinear transport for two coupled one-dimensional quantum wires or carbon nanotubes described by Luttinger liquid
theory. Transport properties are shown to crucially depend on the contact length L
c. For a special interaction strength, the problem can be solved analytically for arbitrary L
c. For point-like contacts and strong interactions, a qualitatively different picture compared to a Fermi liquid emerges, characterized
by zero-bias anomalies and strong dependence on the applied cross voltage. In addition, pronounced Coulomb drag phenomena
are important for extended contacts.
Received 28 July 2000 相似文献
50.
(n × 1) reconstructions and facetting of the (1 1 0) polar surface of SrTiO3 are studied by means of a combination of shell model and density functional calculations. The polarity compensation can be achieved through the formation of {1 0 0} nano-facets, which play a crucial role in the reconstruction process. The behaviors of various possible terminations (Sr, Ti, and O) are analyzed, as well as their atomic structure and energetics. Their stability in different chemical environments is discussed, with respect to previous formulations and experimental results. The Sr-terminated surface tends to expose large facets, while the TiO and O terminations are marginally stabilized or even destabilized by (n × 1) reconstructions, respectively. Trend to facetting results from a subtle competition between the thermodynamic stability of the ideal non stoichiometric (n × 1) surfaces, and huge atomic relaxations that contribute to the lowering of the surface energy differently for each termination. 相似文献