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6.078 articles found

4001

Short-circuit photocurrent in epitaxial lead zirconate-titanate thin films

Pintilie, L; Vrejoiu, I; Rhun, GL; Alexe, M

MAR 15 2007, JOURNAL OF APPLIED PHYSICS, 101

DOI: 10.1063/1.2560217

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Photovoltaic properties of the metal-ferroelectric-metal structures, having SrRuO3 metal oxide electrodes and Pb(Zr,Ti)O-3 (PZT) as ferroelectric layer, are investigated by the short-circuit photocurrent (SC-PHC) in the 200-800 nm wavelength domain. The band-gap dependence on the Zr content was determined from the spectral distribution of the SC-PHC signal. It was found that the band-gap value increases linearly with the Zr content, from about 3.9 eV to about 4.4 eV. It is shown that the sign and the magnitude of the signal depend on the internal bias and on the spontaneous polarization direction and value. The photocurrent describes a hysteresis loop similar to that of the ferroelectric polarization and can be used as a nondestructive readout of the nonvolatile memories based on PZT films. The existence of a significant SC-PHC signal at wavelengths corresponding to subgap energies is attributed to the presence of charged, deep levels in the forbidden band. It is also shown that the epitaxial PZT films have the potential for solid-state UV detectors, with current responsivity as high as 1 mA/W. The results are not entirely consistent with a bulk photovoltaic effect and are discussed in the frame of a Schottky barrier model for the metal-ferroelectric interface. (c) 2007 American Institute of Physics.

4002

Growth of ZrSnTiO thin films by pulsed-laser deposition

Nistor, M; Ioachim, A; Gallas, B; Defourneau, D; Perriere, J; Seiler, W

MAR 7 2007, JOURNAL OF PHYSICS-CONDENSED MATTER, 19

DOI: 10.1088/0953-8984/19/9/096006

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The formation of ZrSnTiO thin films by pulsed-laser deposition has been studied. By the complementary use of Rutherford backscattering spectrometry, x-ray diffraction and scanning electron microscopy, the composition, crystalline structure and surface morphology of the films were investigated. The optimum conditions for the growth of dense, stoichiometric and crystalline films were determined, i.e. substrate temperature of 700 degrees C and oxygen pressure in the 10(-3)-0.1 mbar range. Such ZrSnTiO films present the classical orthorhombic structure for growth on Si substrates, while the use of MgO single crystal substrates leads to the formation of epitaxial ZrSnTiO films with a tetragonal structure. This previously unobserved ZrSnTiO crystalline phase obtained in thin film form is the result of an epitaxy stabilization effect, and presents improved optical properties as shown by the results of spectroscopic ellipsometry measurements. Moreover, the films grown at 700 degrees C under low oxygen pressure (< 10(-5) mbar) were composed of a Sn rich surface layer superimposed on an understoichiometric zirconium titanate oxide film near the substrate. This last layer, which crystallizes in a cubic structure and has never been reported in bulk material, could be related to the presence of oxygen vacancies in the films grown in these conditions.

4003

Silicon detectors: Damage, modelling and expected long-time behaviour in physics experiments at ultra high energy

Lazanu, I; Lazanu, S

MAR 1 2007, NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 572, 299

DOI: 10.1016/j.nima.2006.10.280

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In this contribution, the structural modifications of the material and the degradation of devices is modelled and compared with the experimental data for more resistivities, temperatures, crystal orientations and oxygen concentrations, considering the existence of the new primary fourfold coordinated defect, besides the vacancy and the interstitial. Some estimations of the behaviour of detectors in specific environments at the next generations of high-energy physics experiments as LHC, SLHC, VLHC, or ULHC are done. (c) 2006 Elsevier B.V. All rights reserved.

4004

Optical characterization of the phosphate glasses containing pair transition ions

Elisa, M; Grigorescu, C; Vasiliu, I; Bulinski, M; Kuncser, V; Predoi, D; Filoti, G; Meghea, A; Iftimie, N; Giurginca, M; Onose, C

MAR 2007, OPTICAL AND QUANTUM ELECTRONICS, 39, 531

DOI: 10.1007/s11082-007-9097-1

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The paper deals with optical and electronic properties of the aluminophosphate glasses containing Fe-Mn and Fe-Cr ion pairs in different concentration. The influence of the mixed alkali ions over the electronic properties has been investigated. The optical behavior (optical transmission) of the glass samples has been studied by UV-VIS spectroscopy and the refractive index dependency on wavelength has been discussed. The transmission spectra show features specific for the doping transition ions (TM), revealing different oxidation states of iron (Fe2+/Fe3+), manganese (Mn2+/Mn3+) and chromium (Cr3+/Cr6+) in the vitreous network. Mossbauer spectroscopy offers information regarding the TM oxidation states, redox processes and the iron coordination symmetry in the vitreous network. In the case of Fe-Mn doped glasses, the percentage of Fe2+ is about 40% and a doubled iron content leads to an increasing of Fe2+ percentage up to 53%. The replacing of lithium ions by natrium ions (mixed alkali effect) provides an increasing of the Fe2+ percentage up to 56%. The occurrence of the tetrahedral or octahedral symmetry of Fe(2+)supercript stop ions bonded by O2- ions depends on the transition ion nature and Li+/Na+ ratio. Infrared absorption spectra of the pair transition ions-doped aluminophosphate glasses reveal optical phonons specific for the phosphate glass matrix.

4005

Study of non catalytic oxidehydrogenation of isobutane in an integral reactor

Grecu, MN; Burducea, G; Grecu, V; Moldovan, R; Beica, T; Zgura, I

MAR 2007, REVUE ROUMAINE DE CHIMIE, 52, 281

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X-band ESR spectra of the calamitic and discotic lyotropic nematic phases in sodium dodecyl sulphate (SDS)/decanol/water system, doped with paramagnetic nitroxide free radicals are analyzed in this paper. The studied temperature range was chosen to include phase transitions of the lyotropic systems. The variation of the surfactant hydrocarbon chains ordering versus temperature is determined by the hyperfine splitting tensor (,4) and the spectroscopic splitting tensor ((g) under bar) anisotropies. The temperature dependence of the molecular order parameters for both lyotropic systems and the corresponding angular fluctuations are presented and discussed.

4006

Abnormal anti-Stokes Raman spectra of single walled carbon nanotubes raised from coherent anti-Stokes Raman scattering and optical cooling processes

Baltog, I; Baibarac, M; Mihut, L; Lefrant, S

MAR 2007, DIGEST JOURNAL OF NANOMATERIALS AND BIOSTRUCTURES, 2, 198

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For the single-walled carbon nanotubes, the higher values of anti-Stokes/Stokes Raman intensity ratio (I(as)/I(s)) then the predictions of the Maxwell-Bolzmann formula indicates a CARS emission resulting from a wave mixing process between the incident laser light (omega(l)) and Stokes Raman light (omega(s)) generated by a SERS mechanism. The weaker value of (I(as)/Is) observed at resonant excitation of semiconducting nanotubes in the E(22)(S) van Hove state, relates a quantum cooling process occurred during the relaxation of the E22S excited state in two steps-by phonon emission from E(22)(S) to E(11)(S) followed by a spontaneous luminescence emission at E(11)(S).

4007

Ferroelectric polarization-leakage current relation in high quality epitaxial Pb(Zr, Ti)O-3 films

Pintilie, L; Vrejoiu, I; Hesse, D; LeRhun, G; Alexe, M

MAR 2007, PHYSICAL REVIEW B, 75

DOI: 10.1103/PhysRevB.75.104103

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Leakage current measurements were performed on epitaxial, single-crystal quality Pb(Zr,Ti)O-3 films with thicknesses in the 50-300 nm range. It was found that the voltage behavior of the leakage current has a minor dependence on thickness, which rules out the space-charge limited currents as main leakage source. Temperature-dependent measurements were performed to obtain more information on the transport mechanism through the metal-ferroelectric-metal (MFM) structure. The results are analyzed in the frame of interface-controlled Schottky emission. A surprisingly low value of only 0.12-0.13 eV was obtained for the potential barrier, which is much smaller than the reported value of 0.87 eV [I. Stolichnov , Appl. Phys. Lett. 75, 1790 (1999)]. The result is explained by the effect of the ferroelectric polarization on the potential barrier height. The low value of the effective Richardson constant, of the order of 10(-7)-10(-6) A/cm(2) K-2, suggests that the pure thermionic emission is not the adequate conduction mechanism for epitaxial MFM structures. The true mechanism might be interface-controlled injection, followed by a low mobility drift through the film volume.

4008

A study on iron oxide nanoparticles coated with dextrin obtained by coprecipitation

Predoi, D

MAR 2007, DIGEST JOURNAL OF NANOMATERIALS AND BIOSTRUCTURES, 2, 173

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The iron oxide nanoparticles and iron oxide nanoparticles coated with dextrin have been synthesized using aqueous solution of ferric and ferrous ions and mixtures of dextrin with sodium salt. The size of the iron-oxide nanoparticles is controlled by the concentration of sodium salt in the medium. An average size of iron oxide and iron oxide coated with dextrin was found by transmission electron microscopy (TEM). The iron oxide nanoparticles are nearly spherical with an average diameter of about 8.0 +/- 1 nm. The iron oxide nanoparticles coated with dextrin appear as cluster-like aggregates. The average diameter of these nanoparticles is about 5.1 nm. The attachment of the dextrin on the particle surface was confirmed by FTIR spectroscopy and thermogravimetric analyses (TGA).

4009

Theoretical study of electronic transport through a small quantum dot with a magnetic impurity

Tolea, M; Bulka, BR

MAR 2007, PHYSICAL REVIEW B, 75

DOI: 10.1103/PhysRevB.75.125301

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We model a small quantum dot with a magnetic impurity by the Anderson Hamiltonian with a supplementary exchange interaction term. The transport calculations are performed by means of the Green functions within the equation of motion scheme, in which two decoupling procedures are proposed, for high and low temperatures, respectively. The paper focuses on the charge fluctuations for such a system, an aspect not addressed before, as well as on the Kondo resonance. We show a specific role of the excited state, which can be observed in transport and in spin-spin correlations. Our studies show a many-body feature of the phase shift of transmitted electrons, which is manifested in a specific dip. In the Kondo regime, our calculations complement existing theoretical results. The system shows three Kondo peaks in the density of states: one at the Fermi energy and two side peaks, at a distance corresponding to the singlet-triplet level spacing. The existence of the central peak is conditioned by a degenerate state (the triplet) below the Fermi energy.

4010

The influences of the packing ligand on spin state and magnetic interactions in new oxalates with 3d-transition metals

Filoti, G; Bartolome, J; Kuncser, V; Mindru, I; Patron, L

MAR 2007, JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS, 310, 1454

DOI: 10.1016/j.jmmm.2006.10.465

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Two new hetero tri-nuclear oxalates (NH4)(8)[Fe2CO(C2O4)(8)]-6H(2)O and [Fe2Co(C2O4)(2)(OH)(4)]center dot 2H(2)O have been synthesized. The compound presented opposite behaviour in ac-susceptibility measurements, different frustration level and spin-orbit coupling in magnetization ones. The Mossbauer approach pointed to local interactions governed by metal-oxalate strongly coupled unit. The data were interpreted in terms of role of positive (NH4) or negative (OH) bridging ligands on general magnetic properties. (c) 2006 Published by Elsevier B.V.