988 resultados para Eduard Quillinan


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We study the nonequilibrium behavior of the three-dimensional Gaussian random-field Ising model at T=0 in the presence of a uniform external field using a two-spin-flip dynamics. The deterministic, history-dependent evolution of the system is compared with the one obtained with the standard one-spin-flip dynamics used in previous studies of the model. The change in the dynamics yields a significant suppression of coercivity, but the distribution of avalanches (in number and size) stays remarkably similar, except for the largest ones that are responsible for the jump in the saturation magnetization curve at low disorder in the thermodynamic limit. By performing a finite-size scaling study, we find strong evidence that the change in the dynamics does not modify the universality class of the disorder-induced phase transition.

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The influence of vacancy concentration on the behavior of the three-dimensional random field Ising model with metastable dynamics is studied. We have focused our analysis on the number of spanning avalanches which allows us a clear determination of the critical line where the hysteresis loops change from continuous to discontinuous. By a detailed finite-size scaling analysis we determine the phase diagram and numerically estimate the critical exponents along the whole critical line. Finally, we discuss the origin of the curvature of the critical line at high vacancy concentration.

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We investigate the influence of the driving mechanism on the hysteretic response of systems with athermal dynamics. In the framework of local mean-field theory at finite temperature (but neglecting thermally activated processes), we compare the rate-independent hysteresis loops obtained in the random field Ising model when controlling either the external magnetic field H or the extensive magnetization M. Two distinct behaviors are observed, depending on disorder strength. At large disorder, the H-driven and M-driven protocols yield identical hysteresis loops in the thermodynamic limit. At low disorder, when the H-driven magnetization curve is discontinuous (due to the presence of a macroscopic avalanche), the M-driven loop is reentrant while the induced field exhibits strong intermittent fluctuations and is only weakly self-averaging. The relevance of these results to the experimental observations in ferromagnetic materials, shape memory alloys, and other disordered systems is discussed.

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We report on experiments aimed at comparing the hysteretic response of a Cu-Zn-Al single crystal undergoing a martensitic transition under strain-driven and stress-driven conditions. Strain-driven experiments were performed using a conventional tensile machine while a special device was designed to perform stress-driven experiments. Significant differences in the hysteresis loops were found. The strain-driven curves show reentrant behavior yield point which is not observed in the stress-driven case. The dissipated energy in the stress-driven curves is larger than in the strain-driven ones. Results from recently proposed models qualitatively agree with experiments.

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A model for the study of hysteresis and avalanches in a first-order phase transition from a single variant phase to a multivariant phase is presented. The model is based on a modification of the random-field Potts model with metastable dynamics by adding a dipolar interaction term truncated at nearest neighbors. We focus our study on hysteresis loop properties, on the three-dimensional microstructure formation, and on avalanche statistics.

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We present an experimental study of the premartensitic and martensitic phase transitions in a Ni2MnGa single crystal by using ultrasonic techniques. The effect of applied magnetic field and uniaxial compressive stress has been investigated. It has been found that they substantially modify the elastic and magnetic behavior of the alloy. These experimental findings are a consequence of magnetoelastic effects. The measured magnetic and vibrational behavior agrees with the predictions of a recently proposed Landau-type model [A. Planes et al., Phys. Rev. Lett. 79, 3926 (1997)] that incorporates a magnetoelastic coupling as a key ingredient.

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Tècnics del Centre d'Estudis i Experimentació del Ministeri de Foment (CEDEX) avaluen uns suros químicament modificats segons una patent de Surochem SL, empresa fundada pel doctor Eduard Bardají, professor de química de la Universitat de Girona, que permeten recollir vessaments d'olis en l'aigua

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Aquest projecte fi de carrera es centra en un restaurant fictici i genèric anomenat "El Restaurant al Punt". Es tractarà d' una empresa que s' inicia en el sector hostaler amb tot un seguit de coneixements previs per part dels propietaris. L' objectiu principal que es preten assolir en aquest projecte és: desenvolupar l' anàlisi, dissenyar i implementar una aplicació informàtica que permeti gestionar el funcionament d' un restaurant

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Joan Ferrer (Calella, 1960) va ser deixeble i col·laborador del filòleg Joan Coromines. És professor titular de Llengua i cultura hebrea i aramea a la Universitat de Girona. Fa unes setmanes ha presentat la primera història i gramàtica del jiddisch en castellà i prepara, juntament amb Eduard Feliu i Pere Casanellas -és a punt de sortir- el Diccionari Girona hebreu-català, català-hebreu, que també serà el primer d'aquestes característiques. Per Ferrer, l'interès per la cultura jueva no és sinó un acte de justícia, el reconeixement vers una comunitat, una llengua i una cultura que eren una part indestriable de Catalunya des de temps immemorials i que forma part d'una manera compartida d'entendre el món

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Marc Bigas ha guanyat el premi Eduard Fonseré de ciències físiques de l'Institut d'Estudis Catalans amb la tesi Integració 3D de píxels híbrids. Bigas és, a més, responsable de desenvolupament del Parc Científic i Tecnològic de la UdG

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Fa vuit anys, els investigadors Eduard Bardají i Emili Montesinos van decidir que podien treballar conjuntament. Van començar per produir una sèrie de molècules basades en pèptids antimicrobians d’origen animal, que es van sintetitzar en unes molècules híbrides més petites anomenades quimeres, i que després van provar en plantes vives. La intenció era esbrinar si serien capaces de guarir algunes de les malalties més greus que afectaven els fruiters. I va resultar que sí