278 resultados para Colossal Magnetoresistance


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Der Spin Seebeck Effekt repräsentiert einen neuartigen Spin kalorischen Effekt mit vorteilhaften und aussichtsreichen Eigenschaften für Anwendungen in den Gebieten der Spintronik und Thermoelektrik.rnIn dieser Arbeit präsentieren wir eine umfangreiche Untersuchung des Spin Seebeck Effekts in isolierenden, magnetischen Granaten und geben Antworten zum kontrovers diskutierten Ursprung des Effekts. Um dieses Ziel zu erreichen, haben wir die Abhängigkeit des Spin Seebeck Effekts von der Dicke des Ferromagneten, der Temperatur, der Stärke des magnetisches Feldes, der Grenzflächen und des Detektormaterials, sowie Kombinationen dieser Parameter gemessen. Im Zuge dessen haben wir das Wachstum der untersuchten magnetischen Granate optimiert und eine umfassende Analyse der strukturellen und magnetischen Parameter durchgeführt, um Einflüsse der Probenqualität auszuschließen. Des Weiteren zeigte eine Untersuchung des magnetoresistiven Effekts, welcher als mögliche Ursache des Effekts galt, in Kombination mit einer Studie des Messaufbaus, dass parasitäre Einflüsse auf das Messergebnis ausgeschlossen werden können. Unsere Ergebnisse zeigen, dass der Spin Seebeck Effekt mit zunehmender Dicke des Ferromagneten eine Sättigung des Signals aufweist. Diese hängt zudem von der Temperatur ab, da mit abnehmender Temperatur die Sättigung erst bei dickeren Filmen auftritt. Außerdem fanden unsere Messungen ein Maximum des Spin Seebeck Effekts für Temperaturen unterhalb der Raumtemperatur, welcher sowohl von der Dicke des Materials als auch der Magnetfeldstärke und dem Detektormaterial beeinflusst wird. In Messungen bei hohen magnetischen Feldstärken beobachteten wir eine Unterdrückung des Messsignals, dessen Ursache mithilfe von Simulationen auf den magnonischen Ursprung des Spin Seebeck Effekts zurückgeführt werden kann. Dies unterstreicht, dass der Effekt auf vom Ferromagneten emittierten Magnonen basiert. Im letzten Abschnitt dieser Arbeit präsentieren wir Messungen in einem bislang nicht untersuchten ferrimagnetischen Material, welche zwei Vorzeichenwechsel des Spin Seebeck Effekts als Funktion der Temperatur aufzeigen. Dieses bisher unbekannte Signalverhalten betont, dass der Effekt aus einem komplexen Zusammenspiel der magnonischen Moden resultiert und zusätzlich vom Detektormaterial abhängt.rnSomit tragen unsere Ergebnisse und Beobachtungen im hohen Maße zur Beantwortung der Frage nach dem Ursprungs des Spin Seebeck Effekts bei und zeigen neuartige bisher nicht beobachtete Effekte, welche ein neues Kapitel für das Gebiet der Spin Kaloritronik eröffnen.

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Recently nanoscale junctions consisting of 0-D nanostructures (single molecule) or 1-D nanostructures (semiconducting nanowire) sandwiched between two metal electrodes are successfully fabricated and characterized. What lacks in the recent developments is the understanding of the mechanism behind the observed phenomena at the level of atoms and electrons. For example, the origin of observed switching effect in a semiconducting nanowire due to the influence of an external gate bias is not yet understood at the electronic structure level. On the same context, different experimental groups have reported different signs in tunneling magneto-resistance for the same organic spin valve structure, which has baffled researchers working in this field. In this thesis, we present the answers to some of these subtle questions by investigating the charge and spin transport in different nanoscale junctions. A parameter-free, single particle Green’s function approach in conjunction with a posteriori density functional theory (DFT) involving a hybrid orbital dependent functional is used to calculate the tunneling current in the coherent transport limit. The effect of spin polarization is explicitly incorporated to investigate spin transport in a nanoscale junction. Through the electron transport studies in PbS nanowire junction, a new orbital controlled mechanism behind the switching of the current is proposed. It can explain the switching behavior, not only in PbS nanowire, but in other lead-chalcogenide nanowires as well. Beside this, the electronic structure properties of this nanowire are studied using periodic DFT. The quantum confinement effect was investigated by calculating the bandgap of PbS nanowires with different diameters. Subsequently, we explain an observed semiconducting to metallic phase transition of this nanowire by calculating the bandgap of the nanowire under uniform radial strain. The compressive radial strain on the nanowire was found to be responsible for the metallic to semiconducting phase transition. Apart from studying one dimensional nanostructure, we also present transport properties in zero dimensional single molecular junctions. We proposed a new codoping approach in a single molecular carborane junction, where a cation and an anion are simultaneously doped to find the role of a single atom in the device. The main purpose was to build a molecular junction where a single atom can dictate the flow of electrons in a circuit. Recent observations of both positive and negative sign in tunneling magnetoresistance (TMR) the using same organic spin-valve structure hasmystified researchers. From our spin dependent transport studies in a prototypical organic molecular tunneling device, we found that a 3% change in metal-molecule interfacial distance can alter the sign of TMR. Changing the interfacial distance by 3%, the number of participating eigenstates as well as their orbital characteristic changes for anti-parallel configuration of the magnetization at the two electrodes, leading to the sign reversal of the TMR. Apart from this, the magnetic proximity effect under applied bias is investigated quantitatively, which can be used to understand the observed unexpectedmagnetismin carbon basedmaterials when they are in close proximity with magnetic substrates.

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Interest in the study of magnetic/non-magnetic multilayered structures took a giant leap since Grünberg and his group established that the interlayer exchange coupling (IEC) is a function of the non-magnetic spacer width. This interest was further fuelled by the discovery of the phenomenal Giant Magnetoresistance (GMR) effect. In fact, in 2007 Albert Fert and Peter Grünberg were awarded the Nobel Prize in Physics for their contribution to the discovery of GMR. GMR is the key property that is being used in the read-head of the present day computer hard drive as it requires a high sensitivity in the detection of magnetic field. The recent increase in demand for device miniaturization encouraged researchers to look for GMR in nanoscale multilayered structures. In this context, one dimensional(1-D) multilayerd nanowire structure has shown tremendous promise as a viable candidate for ultra sensitive read head sensors. In fact, the phenomenal giant magnetoresistance(GMR) effect, which is the novel feature of the currently used multilayered thin film, has already been observed in multilayered nanowire systems at ambient temperature. Geometrical confinement of the supper lattice along the 2-dimensions (2-D) to construct the 1-D multilayered nanowire prohibits the minimization of magnetic interaction- offering a rich variety of magnetic properties in nanowire that can be exploited for novel functionality. In addition, introduction of non-magnetic spacer between the magnetic layers presents additional advantage in controlling magnetic properties via tuning the interlayer magnetic interaction. Despite of a large volume of theoretical works devoted towards the understanding of GMR and IEC in super lattice structures, limited theoretical calculations are reported in 1-D multilayered systems. Thus to gauge their potential application in new generation magneto-electronic devices, in this thesis, I have discussed the usage of first principles density functional theory (DFT) in predicting the equilibrium structure, stability as well as electronic and magnetic properties of one dimensional multilayered nanowires. Particularly, I have focused on the electronic and magnetic properties of Fe/Pt multilayered nanowire structures and the role of non-magnetic Pt spacer in modulating the magnetic properties of the wire. It is found that the average magnetic moment per atom in the nanowire increases monotonically with an ~1/(N(Fe)) dependance, where N(Fe) is the number of iron layers in the nanowire. A simple model based upon the interfacial structure is given to explain the 1/(N(Fe)) trend in magnetic moment obtained from the first principle calculations. A new mechanism, based upon spin flip with in the layer and multistep electron transfer between the layers, is proposed to elucidate the enhancement of magnetic moment of Iron atom at the Platinum interface. The calculated IEC in the Fe/Pt multilayered nanowire is found to switch sign as the width of the non-magnetic spacer varies. The competition among short and long range direct exchange and the super exchange has been found to play a key role for the non-monotonous sign in IEC depending upon the width of the Platinum spacer layer. The calculated magnetoresistance from Julliere's model also exhibit similar switching behavior as that of IEC. The universality of the behavior of exchange coupling has also been looked into by introducing different non-magnetic spacers like Palladium, Copper, Silver, and Gold in between magnetic Iron layers. The nature of hybridization between Fe and other non-magnetic spacer is found to dictate the inter layer magnetic interaction. For example, in Fe/Pd nanowire the d-p hybridization in two spacer layer case favors anti-ferromagnetic (AFM) configuration over ferromagnetic (FM) configuration. However, the hybridization between half-filled Fe(d) and filled Cu(p) state in Fe/Cu nanowire favors FM coupling in the 2-spacer system.

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Related with the detection of weak magnetic fields, the anisotropic magnetoresistive (AMR) effect is widely utilized in sensor applications. Exchange coupling between an antiferromagnet (AF) and the ferromagnet (FM) has been known as a significant parameter in the field sensitivity of magnetoresistance because of pinning effects on magnetic domain in FM layer by the bias field in AF. In this work we have studied the thermal evolution of the magnetization reversal processes in nanocrystalline exchange biased Ni80Fe20/Ni-O bilayers with large training effects and we report the anisotropic magnetoresistance ratio arising from field orientation in the bilayer.

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Related with the detection of weak magnetic fields, the anisotropic magnetoresistive(AMR) effect is widely utilized in sensor applications. Exchange coupling between an antiferromagnet (AF) and the ferromagnet (FM) has been known as a significant parameter in the field sensitivity of magnetoresistance because of pinning effects on magnetic domain in FM layer by the bias field in AF. In this work we have studied the thermal evolution of the magnetization reversal processes in nanocrystalline exchange biased Ni80Fe20/Ni-O bilayers with large training effects and we report the anisotropic magnetoresistance ratio arising from field orientation in the bilayer.

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The half antivortex, a fundamental topological structure which determines magnetization reversal of submicron magnetic devices with domain walls, has been suggested also to play a crucial role in spin torque induced vortex core reversal in circular disks. Here, we report on magnetization reversal in circular disks with nanoholes through consecutive metastable states with half antivortices. In-plane anisotropic magnetoresistance and broadband susceptibility measurements accompanied by micromagnetic simulations reveal that cobalt (Co) disks with two and three linearly arranged nanoholes directed at 45° and 135° with respect to the external magnetic field show reproducible step-like changes in the anisotropic magnetoresistance and magnetic permeability due to transitions between different intermediate states mediated by vortices and half antivortices confined to the dot nanoholes and edges, respectively. Our findings are relevant for the development of multi-hole based spintronic and magnetic memory devices.

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La tesis afronta el análisis del itinerario vital de Fernando Távora, una vida entregada apasionadamente a una causa de refundación estética y conceptual de una arquitectura portuguesa condenada a la mediocridad y al ostracismo en el momento en que empieza a ejercer la profesión. La investigación se adentra en todos los aspectos que convergen en su dedicación al logro de aquella misión, pues la que él mismo probablemente llamaría orteguianamente su circunstancia, resulta inseparable de su pensamiento y de su obra. Se pretende establecer la riqueza y complejidad de la figura de Fernando Távora y su importancia como punto de inflexión en la evolución de la arquitectura portuguesa, que ha llegado a alcanzar el reconocimiento internacional en las últimas décadas, fundamentalmente a partir de la consagración de Álvaro Siza Vieira y la denominada Escuela de Oporto. Desde una posición de absoluta autonomía respecto de lo que acontece dentro y fuera de las fronteras portuguesas, su labor se distinguirá por su singularidad teórica y arquitectónica, no dejando por ello de influir decisivamente en su entorno cercano. Dos manifiestos escritos, el juvenil O problema da Casa Portuguesa y el posterior Da Organização do Espaço son elementos estructurantes de un pensamiento teórico que germina en una obra construida inseparable de aquel, de cuya coherencia dan testimonio los aquí considerados verdaderos manifiestos proyectuales del arquitecto. Efectivamente, se analizarán detalladamente como tales la Casa sobre o Mar –manifiesto inicial-, el Pabellón de Tenis –manifiesto de confirmación- y la Casa dos 24 -manifiesto final-, proyectos que vieron la luz en diferentes etapas de su trayectoria y constituyen la aplicación práctica de sus teorías en una sintaxis magistral. En estos tres proyectos es donde verdaderamente la tesis cobra cuerpo, pues suponen el reflejo de la verdadera aportación del arquitecto al pensamiento arquitectónico europeo, la foto fija de la proclamación de resultados de un proyecto arquitectónico integral en momentos muy significativos de su itinerario vital, cuya complejidad se entiende a través de las fases más descriptivas de este documento. Se mostrará cómo para acometer su proyecto integral de arquitectura, una causa de regeneración de la arquitectura portuguesa a partir de la síntesis entre modernidad y tradición, entre universalidad y localidad, tomaría de sus dos personajes más admirados, Le Corbusier y Pessoa, la fuerza moral y la energía que le permitieron acometer apasionadamente tamaña misión. En una infatigable búsqueda en lo global y lo local, Távora conseguirá prestar gran atención al contexto del lugar de intervención sin renunciar a sus convicciones modernas, introduciendo la historia y el dibujo como herramientas de conocimiento del mismo y posteriormente del proceso creativo. El método proyectivo resultante de este modelo, que transmitirá a través de su ejercicio docente a sucesivas generaciones de arquitectos, se convertirá en elemento estructurante de una tendencia surgida de las aulas portuenses, que la crítica internacional acabará denominando Escuela de Oporto en un sentido más amplio. Por su importancia dentro del itinerario profesional del[os] arquitecto[s] portuense[s], las fases más destacadas de su evolución a partir de los años 50 se analizarán en paralelo a una serie de obras representativas de diferentes momentos de la trayectoria de Fernando Távora. En este itinerario vital, a pesar de la originalidad de su pensamiento y su obra, se atisban ciertos paralelismos con grandes arquitectos del siglo XX, que esta tesis afronta. Se puede distinguir entre influencias pasajeras de algunos maestros modernos en los que Távora buscaba la confirmación a sus propias teorías, similitudes con arquitectos coetáneos cuya obra conoció y a los que se encontró cercano por la convergencia de algunos de sus criterios e incluso sorprendentes coincidencias con arquitectos desconocidos para él, entre las que cabe destacar la de los maestros de la Escuela de Madrid Alejandro de la Sota y Javier Sáenz de Oiza. Por último, en una alegoría con los heterónimos de Fernando Pessoa, se analiza desde una perspectiva personal fruto de la investigación y de las entrevistas mantenidas con todos ellos, la importante labor de Álvaro Siza Vieira, Alexandre Alves Costa y su hijo José Bernardo Távora como agentes coadyuvantes en la consecución del proyecto integral de arquitectura [y vida] de Fernando Távora. Sin lugar a dudas, Álvaro Siza constituye el personaje fundamental e imprescindible para que la arquitectura portuguesa alcanzase la privilegiada consideración que en la actualidad ostenta en la escena internacional. Un arquitecto consagrado que ocupa ya, y ocupará siempre, un lugar privilegiado en la breve lista de maestros míticos e irrepetibles de la arquitectura contemporánea. Con todo, cabe afirmar con la paráfrasis bíblica que da título a la tesis que ‘En el principio era Távora...’ ABSTRACT This thesis addresses the analysis of Fernando Távora’s life journey, a life that was passionately devoted to the cause of aesthetically and conceptually overhauling Portuguese architecture, which was doomed to mediocrity and ostracism at the time when he started practicing professionally. This research delves into all aspects converging in his dedication to achieving that mission, since what he himself would probably call his circumstance – in the manner of José Ortega y Gasset – is inseparable from his thinking and his work. This thesis seeks also to establish the richness and complexity of Fernando Távora’s figure and his importance as a turning point in the evolution of Portuguese architecture, which has gone on to achieve international recognition in recent decades, especially after the consecration of Álvaro Siza Vieira and the so-called School of Oporto. From an absolutely autonomous position with regard to what is happening within and outside Portuguese borders, his work will stand out due to its theoretical and architectural uniqueness – this not being a reason to prevent its decisive influence on his close surroundings. Two written manifestos, his early O problema da Casa Portuguesa and his subsequent Da Organização do Espaço, become structural elements of the theoretical thinking that develops into works which are built in parallel with the former. The coherence of this thinking is reflected on the hereby considered the architect’s true project manifestos. Indeed, we will analyse as such the Casa sobre o Mar (initial manifesto), the Tennis Pavilion (confirmation manifesto) and Casa dos 24 (final manifesto), projects which saw the light at different stages of his career and constitute the practical application of his theories in a masterful syntax. These are the three projects where the thesis takes shape, as they become the reflection of the architect’s true contribution to the European architectural school of thought; the still picture of the results proclamation of a whole architectural project at highly significant moments in his life journey, whose complexity can be understood through this document’s most descriptive phases. This study will show how, in order to carry out his architectural project – regenerate Portuguese architecture by synthesizing modernity and tradition, universality and locality –, Távora would take the moral strength and energy from his two most admired figures, Le Corbusier and Pessoa, allowing him to passionately undertake such a colossal mission. In a tireless search within the global and the local, Távora will manage to pay more attention to the context of the intervention place without compromising his modern convictions, by introducing history and drawing as knowledge tools of the place and eventually of the creative process. The resulting projective method of this model, which he will transmit to successive generations of architects through his teaching, will become a structural element of a trend emerged from the Oporto classrooms which international critique will end up denominating School of Porto in a broader sense. Due to its importance within Porto architect[s]’ professional career, the most prominent phases of its evolution as of the 50s will be analysed in parallel to a series of representative works from different moments in Fernando Távora’s career. Despite the originality of his thinking and his work, certain parallelisms with great architects from the 20th century can be found in Távora’s life journey, which this thesis will address. Amongst temporary influences of some modern masters in whom Távora sought confirmation of his own theories, similarities can be spotted with contemporary architects whose work he knew and to whom he felt close because of the convergence of some of his views. It is also possible to see surprising coincidences with architects he did not know, such as Alejandro de la Sota and Javier Sáenz de Oiza, masters from the School of Madrid. Finally, in an allegory with Fernando Pessoa’s heteronyms, this thesis studies – from a personal perspective based on research and the interviews held with all of them – the important work of Álvaro Siza Vieira, Alexandre Alves Costa and his son Jose Bernardo Távora as auxiliaries in the achievement of Fernando Távora’s complete architectural [and life] project. Without the slightest doubt, Álvaro Siza constitutes the essential figure thanks to whom Portuguese architecture would reach the advantaged position it holds nowadays in the international arena. An acclaimed architect, Siza already holds a privileged spot in the brief list of legendary and unrepeatable masters of contemporary architecture. Nevertheless, with the biblical paraphrase that entitles this thesis it can be claimed that ‘In the beginning was Távora…’

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No presente estudo, amostras policristalinas ricas em Ta e com estequiometrias Ta1-xZrx; x < 0.15; foram preparadas através da mistura apropriada dos elementos metálicos, os quais foram fundidos em forno a arco elétrico sobre uma placa de cobre refrigerada a água e sob atmosfera de argônio de alta pureza. Os padrões de difração de raios-X das ligas, como fundidas (as cast) e tratadas termicamente a 850 °C por 24 h, revelaram a ocorrência de uma estrutura cristalina cúbica de corpo centrada bcc, tipo W, e parâmetros de rede que aumentam suavemente com o aumento do teor de Zr nas ligas. Medidas de susceptibilidade magnética dc, conduzidas nas condições de resfriamento da amostra em campo zero (ZFC) e do resfriamento com o campo magnético aplicado (FC), indicaram que supercondutividade volumétrica é observada abaixo de ~ 5.8, 6.9, 7.0 K em amostras com x = 0.05, 0.08, e 0.10, respectivamente. Essas temperaturas críticas supercondutoras são bastante superiores àquela observada no Ta elementar ~ 4.45 K. Medidas de resistividade elétrica na presença de campos magnéticos aplicados de até 9 T confirmaram a temperatura crítica supercondutora das amostras estudadas. O campo crítico superior Hc2 e o comprimento de coerência E foram estimados a partir dos dados de magnetorresistência. Os valores estimados de Hc2 foram de ~ 0.46, 1.78, 3.85 e 3.97 T, resultando em valores de E ~ 26.0, 13.6, 9.2 e 9.1 nm para as ligas as cast com x = 0.00, 0.05, 0.08 e 0.10, respectivamente. A partir dos dados experimentais do calor específico Cp das ligas, magnitudes estimadas do salto em Cp nas vizinhanças das transições supercondutoras indicaram valores maiores que o previsto pela teoria BCS. Utilizando as equações analíticas derivadas da teoria do acoplamento forte da supercondutividade foi então proposto que o aumento da temperatura de transição supercondutora nas ligas devido a substituição parcial do Ta por Zr está intimamente relacionado ao aumento do acoplamento elétron-fônon, visto que a densidade de estados eletrônicos no nível de Fermi foi estimada ser essencialmente constante através da série Ta1-xZrx com x < 0.10.

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We address the fundamental question of whether magnetoresistance (MR) of atomic-sized contacts of nickel is very large because of the formation of a domain wall (DW) at the neck. Using ab initio transport calculations we find that, as in the case of nonmagnetic electrodes, transport in Ni nanocontacts depends very much on the orbital nature of the electrons. Our results are in agreement with several experiments in the average value of the conductance. On the other hand, contrary to existing claims, DW scattering does not account for large MR in Ni nanocontacts.

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Contrary to the antiferromagnetic and insulating character of bulk NiO, one-dimensional chains of this material can become half metallic due to the lower coordination of their atoms. Here we present ab initio electronic structure and quantum transport calculations of ideal infinitely long NiO chains and of more realistic short ones suspended between Ni electrodes. While infinite chains are insulating, short suspended chains are half-metallic minority-spin conductors that displays very large magnetoresistance and a spin-valve behavior controlled by a single atom.

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v. 1 The dukes of Urbino; Edward Baines; Francesco Pforza; Social life in past centuries; Harford's Michael Angelo; Decade of Italian women; Peden the prophet; Filippo Strozzi; Lord Macaulay as a translator; The pope & the friar; Whittington & his cat; Autobiography of Mrs. Piozzi; Early years of Pitt; Last years of Pitt.--v. 2 Washington Irving; Irving at Sunnyside; Reliques of Mrs. Knight; Marc Isambard Brunel; Colossal vestiges; Lady Morgan; Lord Stanhope; Pictor ignotus; Miss Berry; Windham; Our merchant princess; Lucrezia Borgia; America by an American.

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For many strongly correlated metals with layered crystal structure the temperature dependence of the interlayer resistance is different to that of the intralayer resistance. We consider a small polaron model which exhibits this behavior, illustrating how the interlayer transport is related to the coherence of quasiparticles within the layers. Explicit results are also given for the electron spectral function, interlayer optical conductivity, and the interlayer magnetoresistance. All these quantities have two contributions: one coherent (dominant at low temperatures) and the other incoherent (dominant at high temperatures).

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Within the ballistic transport picture, we have investigated the spin-polarized transport properties of a ferromagnetic metal/two-dimensional semiconductor (FM/SM) hybrid junction and an FM/FM/SM structure using quantum tunnelling theory. Our calculations indicate explicitly that the low spin injection efficiency (SIE) from an FM into an SM, compared with a ferromagnet/normal metal junction, originates from the mismatch of electron densities in the FM and SM. To enhance the SIE from an FM into an SM, we introduce another FM film between them to form FM/FM/SM double tunnel junctions, in which the quantum interference effect will lead to the current polarization exhibiting periodically oscillating behaviour, with a variation according to the thickness of the middle FM film and/or its exchange energy strength. Our results show that, for some suitable values of these parameters, the SIE can reach a very high level, which can also be affected by the electron density in the SM electrode.

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The metallic state of high-temperature copper-oxide superconductors, characterized by unusual and distinct temperature dependences in the transport properties(1-4), is markedly different from that of textbook metals. Despite intense theoretical efforts(5-11), our limited understanding is impaired by our inability to determine experimentally the temperature and momentum dependence of the transport scattering rate. Here, we use a powerful magnetotransport probe to show that the resistivity and the Hall coefficient in highly doped Tl2Ba2CuO6+delta originate from two distinct inelastic scattering channels. One channel is due to conventional electron electron scattering; the other is highly anisotropic, has the same symmetry as the superconducting gap and a magnitude that grows approximately linearly with temperature. The observed form and anisotropy place tight constraints on theories of the metallic state. Moreover, in heavily doped non-superconducting La2-xSrxCuO4, this anisotropic scattering term is absent(12), suggesting an intimate connection between the origin of this scattering and superconductivity itself.

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The purpose of this study is to investigate the cultural identities of Santa Rita de Cassia constructed from the representations contained in the speech of Santa Cruz urban area residents, which is located in a harsh part of the State of Rio Grande do Norte. These residents make the story of the Saint full of meaning for themselves, in their daily lives, as well as to the society. This is observed in the narration of Rita de Cassia’s story which has been told in the city over the past one hundred and eighty years, the number of women's names and commercial establishments named “Santa Rita”. In 2010, with the inauguration of the Alto de Santa Rita – a space for worshiping the saint –, the amount of visitors increased in the city, due to the construction and inauguration of a colossal monument representing the image of Rita de Cassia. Then, new social, cultural, religious and political aspects became part of the local reality of the city of Santa Cruz, what made residents have something in common to talk about. According to the interdisciplinary approach of Applied Linguistics, our theoretical background is based on the socio-historical language concept, which understands language as discursive practice. Still theoretically speaking, this study establishes an interface with cultural studies, taking into account the concept of cultural identity in post-modernity society. Discourse analysis proved plural, with a multiplicity of cultural identities ranging from very obedient daughter to wife who suffered because of the husband, from very religious woman to the widow who entered the convent, on to the Saint of the miracles and healings interceding in the lives of the ones who seek for help. It was also observed in the above mentioned investigative path that these identities can be constructed and reconstructed if immersed in a different set of social practices historically determined