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Topological aspects of nonlinear excitonic processes in noncentrosymmetric crystals

Takahiro Morimoto、Naoto Nagaosa2016-07-07Physical review. B./Physical review. B

We study excitonic processes second order in the electric fields in noncentrosymmetric crystals. We derive formulas for shift current and second harmonic generation produced by exciton creation, by using the Floquet formalism combined with the Keldysh Green's function method. It is shown that (i) the steady dc shift c…

Solid-state spectroscopy and crystallographyTerahertz technology and applicationsSpectroscopy and Quantum Chemical Studies

Mechanism of all-optical control of ferromagnetic multilayers with circularly polarized light

Rajasekhar Medapalli、Dymtro Afanasiev、Dokyun Kim 等 9 位作者2016-07-07arXiv

Time-resolved imaging reveals that the helicity dependent all-optical switching (HD-AOS) of Co/Pt ferromagnetic multilayers proceeds by two stages. First one involves the helicity independent and stochastic nucleation of reversed magnetic domains. At the second stage circularly polarized light breaks the degeneracy be…

Materials Sciencephysics.optics

Giant Optical Polarization Rotation Induced by Spin-Orbit Coupling in Polarons

Blai Casals、Rafael Cichelero、Pablo García‐Fernández 等 10 位作者2016-07-07Physical Review Letters

We have uncovered a giant gyrotropic magneto-optical response for doped ferromagnetic manganite La_{2/3}Ca_{1/3}MnO_{3} around the near room-temperature paramagnetic-to-ferromagnetic transition. At odds with current wisdom, where this response is usually assumed to be fundamentally fixed by the electronic band structu…

Multiferroics and related materialsMagnetic and transport properties of perovskites and related materialsAdvanced Condensed Matter Physics

Topological magnetic dipolar interaction and non-local electric magnetization control in topological insulator heterostructures

Stefan Rex、Flavio S. Nogueira、Asle Sudbo2016-07-07arXiv

The magnetoelectric effect predicted in topological insulators makes heterostructures that combine magnetic materials and such insulators promising candidates for spintronics applications. Here, we theoretically consider a setup that exhibits two well-separated interfaces between a topological insulator and a ferromag…

Materials ScienceMesoscale and Nanoscale Physics

Octahedral rotation patterns in strained EuFeO3 and otherPbnmperovskite films: Implications for hybrid improper ferroelectricity

Amber K. Choquette、Cole Smith、Rebecca Sichel-Tissot 等 9 位作者2016-07-07Physical review. B./Physical review. B

The control of octahedral rotations in perovskite heterostructures is an emerging strategy for inducing new functionality as evidenced by recent predictions of improper ferroelectricity, polar metals, and multiferroics. Many of these predictions are predicated on the presence of a specific rotation pattern (${a}^{-}\p…

Ferroelectric and Piezoelectric MaterialsAcoustic Wave Resonator TechnologiesMultiferroics and related materials

Lithium transport through Lithium-ion battery cathode coatings

Shenzhen Xu、Ryan M. Jacobs、Ha M. Nguyen 等 7 位作者2016-07-07arXiv

The surface coating of cathodes using insulator films has proven to be a promising method for high-voltage cathode stabilization in Li-ion batteries. However, there is still substantial uncertainty about how these films function, specifically with regard to important coating design principles such as lithium solubilit…

Materials Science

Electron Emission Energy Barriers and Stability of $Sc_2O_3$ with Adsorbed Ba and Ba-O

Ryan M. Jacobs、John H. Booske、Dane Morgan2016-07-07arXiv

In this study we employ Density Functional Theory (DFT) methods to investigate the surface energy barrier for electron emission (surface barrier) and thermodynamic stability of Ba and Ba-O species adsorption under conditions of high temperature (approximately 1200 K) and low pressure (approximately $10^{-10}$ Torr) on…

Materials Science

Intrinsic defects and conduction characteristics of $Sc_2O_3$ in thermionic cathode systems

Ryan M. Jacobs、John H. Booske、Dane Morgan2016-07-07arXiv

Recent experimental observations indicate that bulk $Sc_2O_3$ (~200 nm thick), an insulator at room temperature and pressure, must act as a good electronic conductor during thermionic cathode operation, leading to the observed high emitted current densities and overall superior emission properties over conventional th…

Materials Science

A random process asperity model for adhesion

M. Ciavarella2016-07-07arXiv

A simple asperity model using random process theory is developed in the presence of adhesion. Using the DMT model for each individual asperity, and asymptotic results at large separations, a new adhesion parameter is found, on which the model depends, namely $θ=\frac{w}{E^{\ast}\sqrt{m_{2}/π} m_{0}^{1/2}}$, where $w,E…

Materials Science

Graphene as a p-type metal for ultimate miniaturization

Francesca Iacopi、Tim Gould、John J. Boeckl 等 11 位作者2016-07-07arXiv

We report macroscopic sheets of highly conductive bilayer graphene with exceptionally high hole concentrations of ~ $10^{15}$ $cm^{-2}$ and unprecedented sheet resistances of 20-25 Ω per square over macroscopic scales, and obtained in-situ over a thin cushion of molecular oxygen on a silicon substrate. The electric an…

Mesoscale and Nanoscale PhysicsMaterials Science

Temperature dependence of the electrical resistivity and the anisotropic magnetoresistance (AMR) of electrodeposited Ni Co alloys

B. G. Tóth、L. Péter、Á. Révész 等 5 位作者2016-07-07arXiv

The electrical resistivity and the anisotropic magnetoresistance (AMR) was investigated for Ni Co alloys at and below room temperature. The Ni Co alloy layers having a thickness of about 2 um were prepared by electrodeposition on Si wafers with evaporated Cr and Cu underlayers. The alloy composition was varied in the…

Materials Science

NMR parameters in gapped graphene systems

M. Crisan、I. Grosu、I. Tifrea2016-07-07arXiv

We calculate the nuclear spin-lattice relaxation time and the Knight shift for the case of gapped graphene systems. Our calculations consider both the massive and massless gap scenarios. Both the spin-lattice relaxation time and the Knight shift depend on temperature, chemical potential, and the value of the electroni…

Mesoscale and Nanoscale PhysicsMaterials Science

Origins of Large Voltage Hysteresis in High Energy-Density Metal Fluoride Lithium-Ion Battery Conversion Electrodes

Linsen Li、Ryan Jacobs、Peng Gao 等 7 位作者2016-07-07arXiv

Metal fluoride and oxides can store multiple lithium-ions through conversion chemistry to enable high energy-density lithium-ion batteries. However, their practical applications have been hindered by an unusually large voltage hysteresis between charge and discharge voltage-profiles and the consequent low energy effic…

Materials Science

Charge Inversion and Topological Phase Transition at a Twist Angle Induced van Hove Singularity of Bilayer Graphene

Youngwook Kim、Patrick Herlinger、Pilkyung Moon 等 7 位作者2016-07-07Nano Letters

van Hove singularities (VHS's) in the density of states play an outstanding and diverse role for the electronic and thermodynamic properties of crystalline solids. At the critical point the Fermi surface connectivity changes, and topological properties undergo a transition. Opportunities to systematically pass a VHS a…

Carbon Nanotubes in CompositesTopological Materials and PhenomenaGraphene research and applications

High‐Oriented Polypyrrole Nanotubes for Next‐Generation Gas Sensor

Mianqi Xue、Fengwang Li、Dong Chen 等 6 位作者2016-07-07Advanced Materials

Highly oriented PPy nanotubes are grown by in situ vapor phase polymerization within a nanoscale template under low temperature. As-fabricated PPy nanotubes are used for gas sensing, where an ultralow detection limit (0.05 ppb) and very fast response are achieved. Such an in situ mass-productive method for synthesizin…

Gas Sensing Nanomaterials and SensorsConducting polymers and applicationsAdvanced Chemical Sensor Technologies

Phonons, Localization, and Thermal Conductivity of Diamond Nanothreads and Amorphous Graphene

Taishan Zhu、Elif Ertekin2016-07-07Nano Letters

Recently, the domains of low-dimensional (low-D) materials and disordered materials have been brought together by the demonstration of several new low-D, disordered systems. The thermal transport properties of these systems are not well-understood. Using amorphous graphene and glassy diamond nanothreads as prototype s…

Thermal properties of materialsCarbon Nanotubes in CompositesGraphene research and applications

Electric Field Induced Switchable Wettability to Water on the Polyaniline Membrane and Oil/Water Separation

Xi Zheng、Zhenyan Guo、Dongliang Tian 等 5 位作者2016-07-07Advanced Materials Interfaces

Smart surfaces with responsive wettability to external stimulus have attracted considerable attention especially in oil/water/solid interface, whereas there still remain challenges of response in situ, low voltage, and stable substrate. Here, a strategy is proposed to achieve the electric field induced water selective…

Surface Modification and SuperhydrophobicityAdvanced Sensor and Energy Harvesting MaterialsElectrospun Nanofibers in Biomedical Applications

Microstructural and optical properties of CuS nanoparticles prepared by sol–gel route

Sana Riyaz、Azra Parveen、Ameer Azam2016-07-07Perspectives in Science

This paper demonstrates the synthesis of CuS nanoparticles using sol–gel route in the presence of distilled water at 100 °C for 3 h. X-ray diffraction (XRD), energy dispersive X-ray spectrum (EDS), and scanning electron microscope (SEM) techniques were employed to study the microstructural properties of the prepared s…

Quantum Dots Synthesis And PropertiesChalcogenide Semiconductor Thin FilmsCopper-based nanomaterials and applications

Topological Defects at the Graphene/ h -BN interface Abnormally Enhance Its Thermal Conductance

Xiangjun Liu、Gang Zhang、Yong‐Wei Zhang2016-07-07Nano Letters

Low thermal conductance across interface is often the limiting factor in managing heat in many advanced device applications. The most commonly used approach to enhance the thermal conductance is to reduce/eliminate the interfacial structural defects. Using a graphene/h-BN (Gr/h-BN) interface, we show surprisingly that…

Advanced Thermoelectric Materials and DevicesGraphene research and applicationsThermal properties of materials