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Effective magnetic permeability of Ni and Co micro- and nanoparticles embedded in a ZnO matrix

Christian Brosseau、Philippe Talbot2005-05-06Journal of Applied Physics

Current trends in the miniaturization of microwave devices have prompted considerable interest in studying electromagnetic transport in nanoscale systems. Understanding the effect of physical structure and the role of interfaces is critical for gaining insight into the electromagnetic and magnetic properties of nanost…

Electromagnetic wave absorption materialsMagnetic Properties and Synthesis of FerritesMultiferroics and related materials

Analysis of wasp-waist hysteresis loops

Lawrence H. Bennett、E. Della Torre2005-05-06Journal of Applied Physics

Wasp-waist and pot-belly hysteresis loops have been observed in many materials. When only the major loop is reported, the results are insufficient to establish which processes are involved. We present two models for wasp-waist materials that produce virtually indistinguishable major loops, but show that first-order re…

Magnetic properties of thin filmsTheoretical and Computational PhysicsMagnetic Properties and Applications

Fermi-level band filling and band-gap renormalization in Ga-doped ZnO

J. D. Ye、Shulin Gu、S. M. Zhu 等 7 位作者2005-05-06Applied Physics Letters

The fundamental optical properties of Ga-doped ZnO films grown by metalorganic chemical vapor deposition were investigated by room-temperature transmittance and photoluminescence (PL) spectroscopy. The Burstein–Moss (BM) shift of the absorption edge energy is observed at the carrier concentration up to 2.47×1019cm−3.…

Chalcogenide Semiconductor Thin FilmsGa2O3 and related materialsZnO doping and properties

Misfit dislocations in nanoscale ferroelectric heterostructures

V. Nagarajan、Chun‐Lin Jia、H. Kohlstedt 等 7 位作者2005-05-06Applied Physics Letters

We present a quantitative study of the thickness dependence of the polarization and piezoelectric properties in epitaxial (001) PbZr0.52Ti0.48O3 films grown on (001) SrRuO3-buffered (001) SrTiO3 substrates. High-resolution transmission electron microscopy reveals that even the thinnest films (∼8nm) are fully relaxed w…

Multiferroics and related materialsElectronic and Structural Properties of OxidesFerroelectric and Piezoelectric Materials

Extreme ultraviolet single-crystal diamond detectors by chemical vapor deposition

Andrea Balducci、M. Marinelli、E. Milani 等 8 位作者2005-05-06Applied Physics Letters

High-quality single-crystal diamond films, homoepitaxially grown by microwave chemical vapor deposition, have been used to produce diamond-based photodetectors. Such devices were tested over a very wide spectral range, from the extreme ultraviolet (UV) (20 nm) up to the near IR region (2400 nm). An optical parametric…

Solid State Laser TechnologiesDiamond and Carbon-based Materials ResearchAdvanced Fiber Laser Technologies

Preparation and Comparison of Supported Gold Nanocatalysts on Anatase, Brookite, Rutile, and P25 Polymorphs of TiO2 for Catalytic Oxidation of CO

Wenfu Yan、Bei Chen、Shannon M. Mahurin 等 9 位作者2005-05-06The Journal of Physical Chemistry B

Nanosized anatase (≤10 nm), rutile (≤10 nm), and brookite (∼70 nm) titania particles have been successfully synthesized via sonication and hydrothermal methods. Gold was deposited with high dispersion onto the surfaces of anatase, rutile, brookite, and commercial titania (P25) supports through a deposition−precipitati…

Advanced Photocatalysis TechniquesCatalytic Processes in Materials ScienceCatalysis and Oxidation Reactions

Phosphorus: First principle simulation of a liquid–liquid phase transition

Luca M. Ghiringhelli、Evert Jan Meijer2005-05-06The Journal of Chemical Physics

We report a Car-Parrinello molecular dynamics study of the liquid-liquid phase transition in phosphorus. We employed a gradient corrected density functional (B-LYP) to describe the electronic structure and performed simulations at constant pressure. Upon increasing pressure we observed, along the 1500 K isotherm, a st…

Machine Learning in Materials ScienceHigh-pressure geophysics and materialsSolid-state spectroscopy and crystallography

Fabrication of wide-band-gap MgxZn1−xO quasi-ternary alloys by molecular-beam epitaxy

Hiroshi Tanaka、Shigeo Fujita、Shizυo Fujita2005-05-06Applied Physics Letters

A series of wurtzite MgZnO quasi-ternary alloys, which consist of wurtzite MgO∕ZnO superlattices, were grown by molecular-beam epitaxy on sapphire substrates. By changing the thicknesses of ZnO layers and/or of MgO layers of the superlattice, the band-gap energy was artificially tuned from 3.30to4.65eV. The highest ba…

Ga2O3 and related materialsCopper-based nanomaterials and applicationsZnO doping and properties

Formation of a metastable phase due to the presence of impurities

Richard P. Sear2005-05-06arXiv

Phase transitions into a new phase that is itself metastable are common; instead of the equilibrium phase nucleating a metastable phase does so. When this occurs the system is sometimes said to be obeying Ostwald's rule. We show how this can happen when there are impurities present that reduce the barrier to heterogen…

Materials Sciencecond-mat.stat-mech

Dynamics and transport properties of heavy fermions: theory

David E Logan、N S Vidhyadhiraja2005-05-06arXiv

The paramagnetic phase of heavy fermion systems is investigated, using a non-perturbative local moment approach to the asymmetric periodic Anderson model within the framework of dynamical mean field theory. The natural focus is on the strong coupling Kondo-lattice regime wherein single-particle spectra, scattering rat…

Strongly Correlated ElectronsMaterials Science

Ab initio calculation of intrinsic spin Hall effect in semiconductors

G. Y. Guo、Yugui Yao、Qian Niu2005-05-06arXiv

Relativistic band theoretical calculations reveal that intrinsic spin Hall conductivity in hole-doped archetypical semiconductors Ge, GaAs and AlAs is large $[\sim 100 (\hbar/e)(Ωcm)^{-1}]$, showing the possibility of spin Hall effect beyond the four band Luttinger Hamiltonian. The calculated orbital-angular-momentum…

Materials ScienceMesoscale and Nanoscale Physics

Optical and transport properties of heavy fermions: theory compared to experiment

N S Vidhyadhiraja、David E Logan2005-05-06arXiv

Employing a local moment approach to the periodic Anderson model within the framework of dynamical mean-field theory, direct comparison is made between theory and experiment for the dc transport and optical conductivities of paramagnetic heavy fermion and intermediate valence metals. Four materials, exhibiting a diver…

Materials ScienceStrongly Correlated Electrons

Branching mechanism of intergranular crack propagation in three dimensions

M. Itakura、H. Kaburaki、C. Arakawa2005-05-06arXiv

We investigate the process of slow intergranular crack propagation by the finite element method model, and show that branching is induced by partial arresting of crack front owing to the geometrical randomness of grain boundaries. A possible scenario for branching instability of crack propagation in disordered continu…

Materials Sciencecond-mat.dis-nn

Effect of electron correlations in Pd, Ni, and Co monowires

Malgorzata Wierzbowska、Anna Delin、Erio Tosatti2005-05-06arXiv

We investigated the effect of mean-field electron correlations on the band electronic structure of Co, Ni, and Pd ultra-thin monatomic nanowires, at the breaking point, by means of density-functional calculations in the self-interaction corrected LDA approach (LDA+SIC) and alternatively by the LDA+$U$ scheme. We find…

Materials ScienceStrongly Correlated Electrons

Relaxation of thermo-remanent magnetization in Fe-Cr GMR multilayers

R. S. Patel、A. K. Majumdar、A. K. Nigam2005-05-06arXiv

The time decay of the thermo-remanent magnetization (TRM) in Fe-Cr giant magnetoresistive (GMR) multilayers has been investigated. The magnetization in these multilayers relaxes as a function of time after being cooled in a small magnetic field of 100 Oe to a low temperature and then the magnetic field is switched off…

Materials Science

Silicon-based spin and charge quantum computation

Belita Koiller、Xuedong Hu、R. B. Capaz 等 5 位作者2005-05-06arXiv

Silicon-based quantum-computer architectures have attracted attention because of their promise for scalability and their potential for synergetically utilizing the available resources associated with the existing Si technology infrastructure. Electronic and nuclear spins of shallow donors (e.g. phosphorus) in Si are i…

Materials ScienceMesoscale and Nanoscale Physics

Magnetic, dielectric, and microwave absorbing properties of iron particles dispersed in rubber matrix in gigahertz frequencies

Sung‐Soo Kim、Suntae Kim、Yeo-Choon Yoon 等 4 位作者2005-05-06Journal of Applied Physics

This study investigates high-frequency magnetic, dielectric, and microwave absorbing properties of iron particles dispersed in rubber matrix for the aim of thin microwave absorbers in gigahertz frequencies. High value of magnetic permeability and dielectric constant can be obtained in the composites containing thin fl…

Advanced Cellulose Research StudiesAdvanced Antenna and Metasurface TechnologiesElectromagnetic wave absorption materials

Preparation of Highly Uniform Ag/TiO2 and Au/TiO2 Supported Nanoparticle Catalysts by Photodeposition

Sze Chi Chan、Mark A. Barteau2005-05-06Langmuir

Photodeposition of Ag nanoparticles on commercial TiO2 particles and nanoparticles was performed in order to provide direct visualization of the spatial distribution of photoactive sites on sub-micrometer-scale and nanoscale TiO2 particle surfaces and to create materials for potential catalytic applications. HRTEM (hi…

Catalytic Processes in Materials ScienceAdvanced Photocatalysis TechniquesCopper-based nanomaterials and applications

Raman spectra of carbon nanowalls grown by plasma-enhanced chemical vapor deposition

S. Kurita、Akihiko Yoshimura、H. Kawamoto 等 8 位作者2005-05-06Journal of Applied Physics

Raman spectra of carbon nanowalls (CNWs) grown using dc plasma-enhanced chemical vapor deposition were analyzed. The Raman spectra of CNWs exhibited G and D bands at ∼1580 and ∼1350cm−1, respectively. It is found that the bandwidth of the G band is relatively narrow, even when the peak intensity ratio of D band to G b…

Diamond and Carbon-based Materials ResearchGraphene research and applicationsCarbon Nanotubes in Composites

Multicolor Light-Emitting Diodes Based on Semiconductor Nanocrystals Encapsulated in GaN Charge Injection Layers

Alexander H. Mueller、Melissa A. Petruska、Marc Achermann 等 8 位作者2005-05-06OpenAlex

Numerous technologies including solid-state lighting, displays, and traffic signals can benefit from efficient, color-selectable light sources that are driven electrically. Semiconductor nanocrystals are attractive types of chromophores that combine size-controlled emission colors and high emission efficiencies with e…

ZnO doping and propertiesQuantum Dots Synthesis And PropertiesChalcogenide Semiconductor Thin Films