961 resultados para electronic paper display


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The magnetic coupling constant of selected cuprate superconductor parent compounds has been determined by means of embedded cluster model and periodic calculations carried out at the same level of theory. The agreement between both approaches validates the cluster model. This model is subsequently employed in state-of-the-art configuration interaction calculations aimed to obtain accurate values of the magnetic coupling constant and hopping integral for a series of superconducting cuprates. Likewise, a systematic study of the performance of different ab initio explicitly correlated wave function methods and of several density functional approaches is presented. The accurate determination of the parameters of the t-J Hamiltonian has several consequences. First, it suggests that the appearance of high-Tc superconductivity in existing monolayered cuprates occurs with J/t in the 0.20¿0.35 regime. Second, J/t=0.20 is predicted to be the threshold for the existence of superconductivity and, third, a simple and accurate relationship between the critical temperatures at optimum doping and these parameters is found. However, this quantitative electronic structure versus Tc relationship is only found when both J and t are obtained at the most accurate level of theory.

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The electronic structure of an isolated oxygen vacancy in SrTiO3 has been investigated with a variety of ab initio quantum mechanical approaches. In particular we compared pure density functional theory (DFT) approaches with the Hartree-Fock method, and with hybrid methods where the exchange term is treated in a mixed way. Both local cluster models and periodic calculations with large supercells containing up to 80 atoms have been performed. Both diamagnetic (singlet state) and paramagnetic (triplet state) solutions have been considered. We found that the formation of an O vacancy is accompanied by the transfer of two electrons to the 3d(z2) orbitals of the two Ti atoms along the Ti-Vac-Ti axis. The two electrons are spin coupled and the ground state is diamagnetic. New states associated with the defect center appear in the gap just below the conduction band edge. The formation energy computed with respect to an isolated oxygen atom in the triplet state is 9.4 eV.

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The electronic and magnetic structures of the LaMnO3 compound have been studied by means of periodic calculations within the framework of spin polarized hybrid density-functional theory. In order to quantify the role of approximations to electronic exchange and correlation three different hybrid functionals have been used which mix nonlocal Fock and local Dirac-Slater exchange. Periodic Hartree-Fock results are also reported for comparative purposes. The A-antiferromagnetic ground state is properly predicted by all methods including Hartree-Fock exchange. In general, the different hybrid methods provide a rather accurate description of the band gap and of the two magnetic coupling constants, strongly suggesting that the corresponding description of the electronic structure is also accurate. An important conclusion emerging from this study is that the nature of the occupied states near the Fermi level is intermediate between the Hartree-Fock and local density approximation descriptions with a comparable participation of both Mn and O states.

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The aim of this paper is to expand on previous quantitative and qualitative research into the use of electronic information resources and its impact on the information behaviour of academics at Catalan universities.

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Development of new technologies in the field of library and information science especially in academic libraries has resulted in the need for library staff to be flexible in adopting new skills and levels of awareness. In addition to core technology skills, importance is to be given to other skills in communication, management, etc. This paper attempts to describe in brief the competencies and skills required for an academic library professional in the digital era .

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Bewegt man sich als Studentin oder Student in psychologischen, medizinischen oder pädagogischen Studiengängen, ist häufig eine systematische Literaturrecherche unerlässlich, um sich über den neuesten Forschungsstand in einem bestimmten Themenfeld zu informieren oder sich in ein neues Thema beispielsweise für die Abschlussarbeit einzuarbeiten. Literaturrecherchen sind zentraler Bestandteil jeden wissenschaftlichen Arbeitens. Die recherchierten Literaturangaben und Quellen bilden die Bausteine, auf denen die Darstellung des Wissens in Hausarbeiten, Magister-, Diplomarbeiten und später Doktorarbeiten basiert. In Form von Quellenangaben, z.B. durch indirekte oder direkte Zitate oder Paraphrasierungen werden Bezugnahmen auf die bereits vorhandene Literatur transparent gemacht. Häufig genügt ein Blick auf eine Literaturliste um zu erkennen, wie Literatur gesucht und zusammengestellt wurde. Wissenschaftliches Arbeiten unterscheidet sich von künstlerischem Arbeiten durch seine Systematik und intersubjektive Nachvollziehbarkeit. Diese Systematik sollte bereits bei der Literaturrecherche beginnen und sich am Ende der Arbeit in der Literaturliste widerspiegeln. Auch wenn in einer Magister-, Diplom- und noch weniger in einer Hausarbeit die gesamte, gefundene Literatur verwendet wird, sondern nur eine sehr kleine Auswahl in die Arbeit einfließt, ist es anstrebenswert, sich über die möglichen Suchstrategien im Einzelnen klar zu werden und sich systematisch durch den Berg von Literatur(einträgen) nach einer Recherche zu einer einschlägigen und begründeten Auswahl vorzuarbeiten. Hier stellen die schnell wachsenden Wissensbestände eine besondere Herausforderung an Studierende und Wissenschaftler. Die Recherche am „Zettelkasten‟ in der Bibliothek ist durch die Online-Recherche ersetzt worden. Wissenschaftliche Literatur wird heute in erster Linie digital gesucht, gefunden und verwaltet. Für die Literatursuche steht eine Vielfalt an Suchmaschinen zur Verfügung. Doch welche ist die richtige? Und wie suche ich systematisch? Wie dokumentiere ich meine Suche? Wie komme ich an die Literatur und wie verwalte ich die Literatur? Diese und weitere Fragen haben auch wir uns gestellt und für alle Studierenden der Fächer Psychologie, Psychoanalyse, Medizin und Pädagogik diese Handreichung geschrieben. Sie will eine Hilfe bei der konkreten Umsetzung einer Literaturrecherche sein.

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Many ultrafast structural phenomena in solids at high fluences are related to the hardening or softening of particular lattice vibrations at lower fluences. In this paper we relate femtosecond-laser-induced phonon frequency changes to changes in the electronic density of states, which need to be evaluated only in the electronic ground state, following phonon displacement patterns. We illustrate this relationship for a particular lattice vibration of magnesium, for which we—surprisingly—find that there is both softening and hardening as a function of the femtosecond-laser fluence. Using our theory, we explain these behaviours as arising from Van Hove singularities: We show that at low excitation densities Van Hove singularities near the Fermi level dominate the change of the phonon frequency while at higher excitations Van Hove singularities that are further away in energy also become important. We expect that our theory can as well shed light on the effects of laser excitation of other materials.

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This paper presents an adaptive learning model for market-making under the reinforcement learning framework. Reinforcement learning is a learning technique in which agents aim to maximize the long-term accumulated rewards. No knowledge of the market environment, such as the order arrival or price process, is assumed. Instead, the agent learns from real-time market experience and develops explicit market-making strategies, achieving multiple objectives including the maximizing of profits and minimization of the bid-ask spread. The simulation results show initial success in bringing learning techniques to building market-making algorithms.

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The electronics industry is encountering thermal challenges and opportunities with lengthscales comparable to or much less than one micrometer. Examples include nanoscale phonon hotspots in transistors and the increasing temperature rise in onchip interconnects. Millimeter-scale hotspots on microprocessors, resulting from varying rates of power consumption, are being addressed using two-phase microchannel heat sinks. Nanoscale thermal data storage technology has received much attention recently. This paper provides an overview of these topics with a focus on related research at Stanford University.

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Each player in the financial industry, each bank, stock exchange, government agency, or insurance company operates its own financial information system or systems. By its very nature, financial information, like the money that it represents, changes hands. Therefore the interoperation of financial information systems is the cornerstone of the financial services they support. E-services frameworks such as web services are an unprecedented opportunity for the flexible interoperation of financial systems. Naturally the critical economic role and the complexity of financial information led to the development of various standards. Yet standards alone are not the panacea: different groups of players use different standards or different interpretations of the same standard. We believe that the solution lies in the convergence of flexible E-services such as web-services and semantically rich meta-data as promised by the semantic Web; then a mediation architecture can be used for the documentation, identification, and resolution of semantic conflicts arising from the interoperation of heterogeneous financial services. In this paper we illustrate the nature of the problem in the Electronic Bill Presentment and Payment (EBPP) industry and the viability of the solution we propose. We describe and analyze the integration of services using four different formats: the IFX, OFX and SWIFT standards, and an example proprietary format. To accomplish this integration we use the COntext INterchange (COIN) framework. The COIN architecture leverages a model of sources and receivers’ contexts in reference to a rich domain model or ontology for the description and resolution of semantic heterogeneity.