4821
Two-dimensional electron system in electromagnetic radiation field
Lungu, RP; Manolescu, A
DEC 30 2001, INTERNATIONAL JOURNAL OF MODERN PHYSICS B, 15, 4259
DOI: 10.1142/S0217979201008007
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We consider a two-dimensional electron gas in the presence of a monochromatic linear polarized electromagnetic field, within the Floquet formalism. The Floquet states have a simple relation with the energy eigenstates in the absence of the field. Therefore the single-particle and the two-particle Green functions of the many-body system with Coulomb interactions, in the radiation field, can be formally calculated by the standard diagrammatic techniques, as for the conservative system. We derive the elementary excitations of quasi-particle type, the plasma dispersion relation, and the ground state quasi-energy, and we relate them to the corresponding results for the conservative system.
4822
Nondiverging vortex pinning barriers at low current densities across the putative elastic vortex-glass-vortex-liquid transition in YBa2Cu3O7-delta films
Miu, L; Basset, M; Jakob, G; Rodriguez, H; Adrian, H
DEC 1 2001, PHYSICAL REVIEW B, 64
DOI: 10.1103/PhysRevB.64.220502
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A detailed analysis of the electric field-current density (E - J) characteristics of YBa2Cu3O7-delta films across the putative thermally induced elastic vortex-glass-vortex-liquid transition predicted by the E(J) curve scaling reveals that the expected increase of the collective pinning barriers with decreasing J is cut off in the low-J region, signaling a dissipation process which involves the plastic deformation of the vortex system. The temperature and magnetic field dependence of the pinning barriers at low J does not change across the scaling-predicted glass transition line. For the investigated magnetic field range (0.5-7 T), over a relatively large temperature interval, in YBa2Cu3O7-delta films there appears a continuous crossover in a pinned plastic vortex assembly, rather than a thermally induced elastic vortex-glass-vortex-liquid transition.
4823
The stability of cadmium chalcogenide pigments in the process of laser cleaning of painted surfaces
Radvan, R; Popovici, N; Savastru, R; Ghica, C; Sava, F; Popescu, M
DEC 2001, JOURNAL OF OPTOELECTRONICS AND ADVANCED MATERIALS, 3, 902
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Pigments based on cadmium selenide sulphides and cadmium sulfides were analysed as regarding their structure and stability against the laser irradiation, a new technique for cleaning the painted surfaces in artwork restoration, The pulsed Nd:YAG laser radiation determines the effusion of some sulphur from the red pigment Cd(S,Se) and significant decrease of the average size of the crystallites. The color turns to dark red. For yellow pigment (CdS) no change of crystallite size was detected after laser irradiation.
4824
On the dynamics of surface layer in octylcyanobiphenyl-aerosil systems
Frunza, S; Frunza, L; Goering, H; Sturm, H; Schonhals, A
DEC 2001, EUROPHYSICS LETTERS, 56, 807
DOI: 10.1209/epl/i2001-00591-8
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A broadband dielectric study of the dispersions of silica spheres (Aerosil 380) in octylcyanobiphenyl (8CB) with densities between 0.083 and 10 g of silica per 1 cm(3) of liquid crystal (LC) is reported. High values of silica densities were achieved for the rst time to observe the behaviour of the LC monolayer on the surface of the silica particles. The relaxation characteristic of the bulk LC is noticed especially for the samples with low silica densities. Additionally, a slow relaxation was detected, even at temperatures for which the bulk LC is in the crystalline state. It was assigned to the surface layer of LC molecules. Remarkably, the temperature dependence of the relaxation rates for this slow process shows a behaviour typical for glass-forming liquids.
4825
Deep level defects in sublimation-grown 6H silicon carbide investigated by DLTS and EPR
Irmscher, K; Pintilie, I; Pintilie, L; Schulz, D
DEC 2001, PHYSICA B-CONDENSED MATTER, 308, 733
DOI: 10.1016/S0921-4526(01)00887-0
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6H-SiC bulk single crystals grown by physical vapor transport (PVT) were investigated by deep-level transient spectroscopy (DLTS) and electron paramagnetic resonance (EPR). One of the observed deep level defects was identified as isolated tungsten on Si sites by EPR. The electron spin of 1 could be explained by W5+ (5d(1)). This is equivalent to the single positive charge state of a double donor when taking into account the Fermi level position in the n-type samples. The interpretation is also consistent with the DLTS detection of a W related deep level which showed a behavior of the capture of electrons and holes that hints at a double donor. In addition a tantalum related deep level is tentatively discussed. W and Ta were incorporated on electrically active sites in 6H-SiC only in low concentrations (2-4 x 10(4) cm(-3)) during crystal growth by PVT. (C) 2001 Elsevier Science B.V. All rights reserved.
4826
La2O3-doped BaTiO3 thin films obtained by pulsed laser deposition
Cernea, M; Mihailescu, IN; Martin, C; Ristoscu, C; Iliescu, M
DEC 2001, JOURNAL OF MODERN OPTICS, 48, 2189
DOI: 10.1080/09500340108235509
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La2O3-doped barium titanate (BaTiO3) thin films have been obtained by pulsed laser deposition. The structure and quality of deposited films were characterized by X-ray diffraction and scanning electron microscopy. A smooth surface was obtained when the films were deposited in 30 Pa ambient oxygen. The composition (elements and oxides) of the thin films were close to those of the target. The layer obtained by pulsed laser deposition from a target of BaTiO3 doped with 0.5 at.% La exhibits good dielectric characteristics: capacitance 88 pF, Curie temperature 59 degreesC and dielectrics loss, tan delta, 0.084.
4827
PbSe1-xTex thick thermoelectric films obtained by electrochemical deposition from aqueous solutions
Nedelcu, M; Sima, M; Stoica, T; Manea, AS; Lazarescu, MF; Visan, T
DEC 2001, JOURNAL OF OPTOELECTRONICS AND ADVANCED MATERIALS, 3, 914
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It is presented a study of PbSe1-xTex thick films electrodeposition on glassy carbon and ITO electrodes in acid solutions (0.1M HNO3), using cyclic voltammetry and rotating-disk techniques. Electrochemical impedance spectroscopy study of PbSe1-xTex film in 0.1M HNO3 is reported.
4828
Influence of the deposition configuration on the composition, structure and morphology of La0.6Y0.07Ca0.33Mn3-delta thin films obtained by pulsed laser deposition
Ghica, C; Valeanu, M; Nistor, LC; Teodorescu, V; Sandu, C; Ristoscu, C; Mihailescu, IN; Werckmann, J; Deville, JP
DEC 2001, INTERNATIONAL JOURNAL OF INORGANIC MATERIALS, 3, 1256
DOI: 10.1016/S1466-6049(01)00153-2
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We present a structural and morphological study on La0.6Y0.07Ca0.33MnO3-delta (LYCMO) thin films deposited by laser ablation onto MgO-buffered silicon wafers using two deposition configurations named on-axis and off-axis. All thin films have been deposited at high temperatures in an oxygen atmosphere. A comparative study between the on-axis and off-axis samples is performed by transmission electron microscopy, electron diffraction and energy dispersive X-ray spectroscopy. The films are polycrystalline and show a columnar morphology. The off-axis sample shows a better crystalline texture, although slight compositional variations have been found. (C) 2001 Elsevier Science Ltd. All rights reserved.
4829
Nanoscale science and engineering in Romania
Dascalu, D; Topa, V; Kleps, I
DEC 2001, JOURNAL OF NANOPARTICLE RESEARCH, 3, 352
DOI: 10.1023/A:1012555023738
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In spite of difficult working conditions and with very low financial support, many groups from Romania are involved in emerging fields, such as the nanoscale science and technology. Until the last years, this activity was developed without a central coordination and without many interactions between these research groups. In the year 2000, some of the institutes and universities active in the nanotechnology field in Romania founded the MICRONANOTECH network. The aim of this paper is to emphasize the main activities and results of the Romanian groups working in this novel domain. Most of the groups are deal with the nanomaterial technology anti only few of them have activities in nanostructure science and engineering, in new concepts and device modeling and technology. This paper describes the nanotechnology research development in two of the most significant institutes from Romania: Centre for Nanotechnologies from National Institute for Research and Development in Microtehnologies (IMT-Bucharest) and from National Institute for Research and Development in Materials Physics (INCD-FM), Magurele. The Romanian research results in nanotechnology field were presented in numerous papers presented in international conferences or published in national and international journals. They are also presented in patents, international awards and fellowships. The research effort and financial support are outlined. Some future trends of the Romanian nanoscale science and technology research are also described.
4830
Non-Heisenberg magnetic behavior of a triangular bridged heterometallic Fe-2(III)Co(II) complex: Evidence of strong orbital contributions
Tsukerblat, BS; Palii, AV; Mirovitskii, VY; Ostrovsky, SM; Turta, K; Jovmir, T; Shova, S; Bartolome, J; Evangelisti, M; Filoti, G
NOV 22 2001, JOURNAL OF CHEMICAL PHYSICS, 115, 9535
DOI: 10.1063/1.1413988
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We report the synthesis, magnetization and ac susceptibility of the triangular mu (3)-oxo-bridged heterometallic complex [Fe2CoO(CH3COO)(6)(3-Cl-Py)(3)], in powder form. The model Hamiltonian is elaborated involving isotropic exchange interactions Fe(III)-Fe(III) and Co(II)-Fe(III) dealing with the real spins of high-spin Co(II) and Fe(III) ions, and also spin-orbit coupling and low-symmetry crystal field (C-2v) acting within the T-4(1g) ground manifold of Co(II) ion. The outlined general model takes into account strong anisotropic orbital contribution to the magnetic characteristics of the whole system arising from Co(II) ion with unquenched orbital angular momentum. The treatment of the Hamiltonian is performed with the use of the irreducible tensor operator technique. The influence of the exchange and spin-orbital interactions on the magnetic properties of Fe-2(III)Co(II) clusters is revealed. The result of calculations in the framework of the isotropic model (neglecting low-symmetry crystal field) are in a good agreement with the experimentally observed magnetization versus magnetic field, as well as with the unusual temperature behavior of the magnetic susceptibility of the powder samples (1.8-250 K). The states of the system are enumerated by the quantum number of the total angular momentum J, these hybrid states are combined from the sets of full and intermediate spins of Fe2Co triangle and orbital angular momentum of Co(II), (with fictious L=1). The best fit to the experimental data is achieved for the exchange parameters J(Fe-Fe)=-87.5 cm(-1), J(Fe-Co)=-17 cm(-1) and orbital reduction factor for Co(II) ion kappa =0.93. The ground state and the first excited one are found to possess total angular momentum J=1/2, Effective g-factors for the ground- and first-excited states calculated using the hybrid spin-orbital functions prove to be 4.3 and 0.75, that are distinctly different from the pure spin value 2 peculiar for the Heisenberg model. The comparison of the magnetic measurements with the theory clearly demonstrates the insufficiency of a simple Heisenberg spin-coupling model as evidenced by the discovered strong orbital magnetic contribution. (C) 2001 American Institute of Physics.