937 resultados para P-Sequential Space


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In the work, the results of an investigation of GaInP/GaInAs/Ge MJ SCs intended for converting concentrated solar radiation, when operating at low temperatures (down to -190 degrees C) are presented. A kink of the cell I-V characteristic has been observed in the region close to V-oc starting from -20 degrees C at operation under concentrated sunlight. The causes for its occurrence have been analyzed and the reasons for formation of a built-in potential barrier for majority charge carriers at the n-GaInP/n-Ge isotype hetero-interface are discussed. The effect of charge carrier transport in n-GaInP/n-p Ge heterostructures on MJ SC output characteristics at low temperatures has been studied including EL technique.

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Among the different optical modulator technologies available such as polymer, III-V semiconductors, Silicon, the well-known Lithium Niobate (LN) offers the best trade-off in terms of performances, ease of use, and power handling capability [1-9]. The LN technology is still widely deployed within the current high data rate fibre optic communications networks. This technology is also the most mature and guarantees the reliability which is required for space applications [9].In or der to fulfil the target specifications of opto-microwave payloads, an optimization of the design of a Mach-Zehnder (MZ) modulator working at the 1500nm telecom wavelength was performed in the frame of the ESA-ARTES "Multi GigaHertz Optical Modulator" (MGOM) project in order to reach ultra-low optical insertion loss and low effective driving voltage in the Ka band. The selected modulator configuration was the X-cut crystal orientation, associated to high stability Titanium in-diffusion process for the optical waveguide. Starting from an initial modulator configuration exhibiting 9 V drive voltage @ 30 GHz, a complete redesign of the coplanar microwave electrodes was carried out in order to reach a 6 V drive voltage @ 30GHz version. This redesign was associated to an optimization of the interaction between the optical waveguide and the electrodes. Following the optimisation steps, an evaluation program was applied on a lot of 8 identical modulators. A full characterisation was carried out to compare performances, showing small variations between the initial and final functional characteristics. In parallel, two similar modulators were submitted to both gamma (10-100 krad) and proton irradiation (10.109 p/cm²) with minor performance degradation.

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The availability of suitable laser sources is one of the main challenges in future space missions for accurate measurement of atmospheric CO2. The main objective of the European project BRITESPACE is to demonstrate the feasibility of an all-semiconductor laser source to be used as a space-borne laser transmitter in an Integrated Path Differential Absorption (IPDA) lidar system. We present here the proposed transmitter and system architectures, the initial device design and the results of the simulations performed in order to estimate the source requirements in terms of power, beam quality, and spectral properties to achieve the required measurement accuracy. The laser transmitter is based on two InGaAsP/InP monolithic Master Oscillator Power Amplifiers (MOPAs), providing the ON and OFF wavelengths close to the selected absorption line around 1.57 µm. Each MOPA consists of a frequency stabilized Distributed Feedback (DFB) master oscillator, a modulator section, and a tapered semiconductor amplifier optimized to maximize the optical output power. The design of the space-compliant laser module includes the beam forming optics and the thermoelectric coolers.The proposed system replaces the conventional pulsed source with a modulated continuous wave source using the Random Modulation-Continuous Wave (RM-CW) approach, allowing the designed semiconductor MOPA to be applicable in such applications. The system requirements for obtaining a CO2 retrieval accuracy of 1 ppmv and a spatial resolution of less than 10 meters have been defined. Envelope estimated of the returns indicate that the average power needed is of a few watts and that the main noise source is the ambient noise.

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La tesis estudia en detalle la Hunstanton Secondary School y su trascendencia. Así, se trata de analizar el conjunto de procesos que hace que esta obra sea entendida como el manifiesto construido del Nuevo Brutalismo en Inglaterra. La Escuela en Hunstanton fue la primera obra proyectada y construida por los Smithson y, si se considera que el legado que dejaron Alison y Peter fue más de carácter teórico que constructivo, ésta se ha convertido en un edificio relevante dentro de su trayectoria profesional. Además, el rigor con el que fue realizado el proyecto y la ratificación de las ideas que subyacían tras él, a pesar del extenso intervalo temporal que caracterizó su proceso constructivo, hacen que esta obra se convierta en una síntesis de la filosofía arquitectónica gestada en Inglaterra tras la guerra. Por otro lado, hay que contemplar que la sencillez del lenguaje constructivo empleado, viene dada por la compleja reiteración de los sistemas proyectuales tipo que formulan para este proyecto y el establecimiento de una gramática casi matemática. La sistematización de su vocabulario hace que, tras el análisis de su arquitectura, se encuentren nuevos parámetros capaces de documentar este momento de la historia de la arquitectura en Inglaterra. La envolvente del edificio constituye al tiempo fachada y estructura. Esta característica ha pasado inadvertida cuando, en numerosas ocasiones y durante seis décadas, se han venido publicando las fotografías de la obra terminada y los dibujos que los Smithson habían realizado en la fase de proyecto. Como consecuencia, ha proliferado el conocimiento de la arquitectura de la escuela a un nivel más superficial, mostrando el resultado formal de la misma y con ello, simplemente se ha dejado intuir la gran influencia que Mies Van der Rohe provocó en los Smithson en los primeros años de desarrollo de su labor como arquitectos. El objetivo principal de esta tesis es, por tanto, facilitar el entendimiento del espacio que propusieron los Smithson a partir del análisis pormenorizado de los distintos sistemas constructivos empleados y del equipo personal que se vio implicado en su construcción. Para ello, es necesario abordar el estudio de los materiales y mecanismos proyectuales que hicieron posible que este conjunto de espacios –interiores y exteriores- resultase definido a través de la relación entre dos variables: una evidente austeridad en la utilización de los materiales y la combinación de los distintos sistemas intervinientes a partir del recurso de la repetición. La Escuela de Hunstanton, a pesar de las inoportunas intervenciones realizadas para adaptar el centro a unas necesidades derivadas de su número de alumnos actual (el doble que en su inicio), continúa proclamando su integridad espacial. Partiendo de la hipótesis de que la arquitectura de la Secondary School en Hunstanton, representa el manifiesto construido del Nuevo Brutalismo en Inglaterra, se concluye que el resultado de su construcción fue consecuencia de numerosas influencias que, en relación con los Smithson, estuvieron presentes durante los años en que se gestó. Algo que va más allá de la conclusión de aquellos debates arquitectónicos que se habían emprendido, por escrito, en las distintas revistas locales de arquitectura. Los mecanismos compositivos empleados, también habían tenido mucho que ver con lo que los historiadores del arte habían venido aportando a la historia de la arquitectura hasta ese momento. Desde los años 40, éstos últimos habían emprendido una nueva manera de contar la historia en la que quedaba fuertemente involucrada su capacidad crítica, provocando interferencias en la mentalidad de los arquitectos de nueva generación y otorgándoles un bagaje cultural subliminalmente determinado y subjetivo. Por supuesto, en el resultado arquitectónico final, también tuvieron mucho que ver los recursos materiales de que se disponía en aquel momento. Así como la optimización de los mismos a través de la adopción de nuevas metodologías de trabajo como puede ser la organización multidisciplinar. La inclusión del ingeniero Ronald Jenkins en el equipo de trabajo de los Smithson supuso una gran oportunidad. Este ingeniero, propuso poner en práctica la entonces innovadora Teoría Plástica en la metodología de cálculo estructural y, con ello consiguió enriquecer el resultado espacial, posibilitando la percepción de una arquitectura ligera –a pesar de sus grandes dimensiones- y vinculada al paisaje donde se inserta. Pero todos estos condicionantes fueron pasados a su vez por el filtro del deseo de una regeneración social, que buscaba el modelo de la sociedad americana. El Buen Vivir que propugnaban los americanos, viajaba a Europa de la mano de la publicidad. Y, al igual que la componente publicitaria tuvo algo que ver en el proceso creativo de la arquitectura de la escuela, también lo tuvo el conocimiento del arte pop y sus recursos compositivos. ABSTRACT The thesis examines in detail the project of Hunstanton Secondary School and the architectural language’s significance used in it. Thus, it is reinterpreting the set of processes that makes this work to be understood as the “built manifesto” of the English New Brutalism. Hunstanton School’s project was the first work designed and built by the Smithsons and, considering their legacy -more theoretical than constructed-, make of this building an important work within their career. In addition, the rigor with which it was carried out the project and the ratification of the ideas lying behind him, make this work becomes a synthesis of the architectural philosophy gestated in England after the war, despite the extensive time interval that characterized its construction process. On the other hand, it must be considered the simplicity of the constructive language used in this project. It is given by the complex projective repetition of the type systems and by the establishment of a quasi-mathematical grammar. The systematization of its vocabulary makes, after a deep analysis of its architecture, to recognize new parameters able to document this moment in the history of English architecture. The building envelope is, at the same time, facade and structure. This feature has been overlooked when many photographs of the finished work and its drawings -made by the Smithsons during the design phase- has been exposed over six decades. As a result, it has proliferated the knowledge of Hunstanton Secondary Modern School’s architecture as a more superficial level, just by showing the formal outcome of its project and thus simply been left the sensation of the great influence that Mies Van der Rohe provocated in the Smithson thinking during their first years of developing his work as architects. Therefore, the main objective of this thesis is to facilitate an understanding of the Smithsons’ proposed space. This is made possible through the detailed analysis of the different systems used in it and, by understanding the knowledge of the team involved in its construction. To prove this, it is necessary to pay attention to the study of the materials and to different project mechanisms that make possible to this group of spaces -inner and outer- be defined through the game played by two variables: an apparent austerity in the use of materials and the combination of the various participant systems through the resource of repetition. Despite the untimely interventions made in order to adapt the center to the new needs (the large increase in the number of students), Hunstanton School’s building continues proclaiming its spatial integrity. Assuming that Hunstanton Secondary School’s architecture represents the manifesto of New Brutalism in England, it is concluded that the result of its construction was the result of numerous influences that, in connection with the Smithsons, were present during the years in which its project was conceived. This meaning goes beyond the conclusions made from the architectural debate that was published in many of local architectural magazines. The compositional mechanisms employed, are also linked to what art historians had contributed to the history of architecture until then. Since the 40s, historians had undertaken a new way to tell History. This new mode strongly implied its critical capacity. All this, was causing interferences in the mentality of the architects of the new generation and, giving them a subliminally determined and very subjective cultural background. Of course, the final architectural result had much to do with the material resources available at that time and, with its optimization through the adoption of new working methods as the multidisciplinary organization. The inclusion of engineer Ronald Jenkins in the team of the Smithsons was a great opportunity. He proposed to implement the new Plastic Theory in the structural calculation and thereby he got enrich the spatial results achieved, by enabling the perception of a lightweight construction, despite its large size and, linked to the landscape where it is inserted. But all these conditions were passed through the filter of social regeneration’s desire, following the American society’s model. This American model travelled to Europe in the hands of advertising. And, in the same way that publicity had something to do with the creative process of this architecture, also had a lot to do the knowledge of pop art and its compositional resources.

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A question often posed in protein folding/unfolding studies is whether the process is fully cooperative or whether it contains sequential elements. To address this question, one needs tools capable of resolving different events. It seems that, at least in certain cases, two-dimensional (2D) IR correlation spectroscopy can provide answers to this question. To illustrate this point, we have turned to the Cro-V55C dimer of the λ Cro repressor, a protein known to undergo thermal unfolding in two discrete steps through a stable equilibrium intermediate. The secondary structure of this intermediate is compatible with that of a partially unfolded protein and involves a reorganization of the N terminus, whereas the antiparallel β-ribbon formed by the C-terminal part of each subunit remains largely intact. To establish whether the unfolding process involves sequential events, we have performed a 2D correlation analysis of IR spectra recorded over the temperature range of 20–95°C. The 2D IR correlation analysis indeed provides evidence for a sequential formation of the stable intermediate, which is created in three (closely related) steps. A first step entails the unfolding of the short N-terminal β-strand, followed by the unfolding of the α-helices in a second step, and the third step comprises the reorganization of the remaining β-sheet and of some unordered segments in the protein. The complete unfolding of the stable intermediate at higher temperatures also undergoes sequential events that ultimately end with the breaking of the H bonds between the two β-strands at the dimer interface.

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Photoreceptor proteins of the phytochrome family mediate light-induced inhibition of stem (hypocotyl) elongation during the development of photoautotrophy in seedlings. Analyses of overt mutant phenotypes have established the importance of phytochromes A and B (phyA and phyB) in this developmental process, but kinetic information that would augment emerging molecular models of phytochrome signal transduction is absent. We have addressed this deficiency by genetically dissecting phytochrome-response kinetics, after having solved the technical issues that previously limited growth studies of small Arabidopsis seedlings. We show here, with resolution on the order of minutes, that phyA initiated hypocotyl growth inhibition upon the onset of continuous red light. This primary contribution of phyA began to decrease after 3 hr of irradiation, the same time at which immunochemically detectable phyA disappeared and an exclusively phyB-dependent phase of inhibition began. The sequential and coordinated actions of phyA and phyB in red light were not observed in far-red light, which inhibited growth persistently through an exclusively phyA-mediated pathway.

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Cytochrome b-type NAD(P)H oxidoreductases are involved in many physiological processes, including iron uptake in yeast, the respiratory burst, and perhaps oxygen sensing in mammals. We have identified a cytosolic cytochrome b-type NAD(P)H oxidoreductase in mammals, a flavohemoprotein (b5+b5R) containing cytochrome b5 (b5) and b5 reductase (b5R) domains. A genetic approach, using blast searches against dbest for FAD-, NAD(P)H-binding sequences followed by reverse transcription–PCR, was used to clone the complete cDNA sequence of human b5+b5R from the hepatoma cell line Hep 3B. Compared with the classical single-domain b5 and b5R proteins localized on endoplasmic reticulum membrane, b5+b5R also has binding motifs for heme, FAD, and NAD(P)H prosthetic groups but no membrane anchor. The human b5+b5R transcript was expressed at similar levels in all tissues and cell lines that were tested. The two functional domains b5* and b5R* are linked by an approximately 100-aa-long hinge bearing no sequence homology to any known proteins. When human b5+b5R was expressed as c-myc adduct in COS-7 cells, confocal microscopy revealed a cytosolic localization at the perinuclear space. The recombinant b5+b5R protein can be reduced by NAD(P)H, generating spectrum typical of reduced cytochrome b with alpha, beta, and Soret peaks at 557, 527, and 425 nm, respectively. Human b5+b5R flavohemoprotein is a NAD(P)H oxidoreductase, demonstrated by superoxide production in the presence of air and excess NAD(P)H and by cytochrome c reduction in vitro. The properties of this protein make it a plausible candidate oxygen sensor.

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Three sequential hurricanes, Dennis, Floyd, and Irene, affected coastal North Carolina in September and October 1999. These hurricanes inundated the region with up to 1 m of rainfall, causing 50- to 500-year flooding in the watershed of the Pamlico Sound, the largest lagoonal estuary in the United States and a key West Atlantic fisheries nursery. We investigated the ecosystem-level impacts on and responses of the Sound to the floodwater discharge. Floodwaters displaced three-fourths of the volume of the Sound, depressed salinity by a similar amount, and delivered at least half of the typical annual nitrogen load to this nitrogen-sensitive ecosystem. Organic carbon concentrations in floodwaters entering Pamlico Sound via a major tributary (the Neuse River Estuary) were at least 2-fold higher than concentrations under prefloodwater conditions. A cascading set of physical, chemical, and ecological impacts followed, including strong vertical stratification, bottom water hypoxia, a sustained increase in algal biomass, displacement of many marine organisms, and a rise in fish disease. Because of the Sound's long residence time (≈1 year), we hypothesize that the effects of the short-term nutrient enrichment could prove to be multiannual. A predicted increase in the frequency of hurricane activity over the next few decades may cause longer-term biogeochemical and trophic changes in this and other estuarine and coastal habitats.

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The human cytomegalovirus (HCMV) genomic unique short (US) region encodes a family of homologous genes essential for the inhibition of major histocompatibility complex (MHC) class I-mediated antigen presentation during viral infection. Here we show that US3, the only immediate early (IE) gene within the US region, encodes an endoplasmic reticulum-resident glycoprotein that prevents intracellular transport of MHC class I molecules. In contrast to the rapid degradation of newly synthesized MHC class I heavy chains mediated by the early gene product US11, we found that US3 retains stable MHC class I heterodimers in the endoplasmic reticulum that are loaded with peptides while retained in the ER. Consistent with the expression pattern of US3 and US11, MHC class I molecules are retained but not degraded during the IE period of infection. Our data identify the first nonregulatory role of an IE protein of HCMV and suggest that HCMV uses different T-cell escape strategies at different times during the infectious cycle.

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We examined the effects of eye position on saccades evoked by electrical stimulation of the intraparietal sulcus (IPS) of rhesus monkeys. Microstimulation evoked saccades from sites on the posterior bank, floor, and the medial bank of the IPS. The size and direction of the eye movements varied as a function of initial eye position before microstimulation. At many stimulation sites, eye position affected primarily the amplitude and not the direction of the evoked saccades. These "modified vector saccades" were characteristic of most stimulation-sensitive zones in the IPS, with the exception of a narrow strip located mainly on the floor of the sulcus. Stimulation in this "intercalated zone" evoked saccades that moved the eyes into a particular region in head-centered space, independent of the starting position of the eyes. This latter response is compatible with the stimulation site representing a goal zone in head-centered coordinates. On the other hand, the modified vector saccades observed outside the intercalated zone are indicative of a more distributed representation of head-centered space. A convergent projection from many modified vector sites onto each intercalated site may be a basis for a transition from a distributed to a more explicit representation of space in head-centered coordinates.

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In the last decades, an increasing interest in the research field of wide bandgap semiconductors was observed, mostly due to the progressive approaching of silicon-based devices to their theoretical limits. 4H-SiC is an example among these, and is a mature compound for applications. The main advantages offered 4H-SiC in comparison with silicon are an higher breakdown field, an higher thermal conductivity, a higher operating temperature, very high hardness and melting point, biocompatibility, but also low switching losses in high frequencies applications and lower on-resistances in unipolar devices. Then, 4H-SiC power devices offer great performance improvement; moreover, they can work in hostile environments where silicon power devices cannot function. Ion implantation technology is a key process in the fabrication of almost all kinds of SiC devices, owing to the advantage of a spatially selective doping. This work is dedicated to the electrical investigation of several differently-processed 4H-SiC ion- implanted samples, mainly through Hall effect and space charge spectroscopy experiments. It was also developed the automatic control (Labview) of several experiments. In the work, the effectiveness of high temperature post-implant thermal treatments (up to 2000°C) were studied and compared considering: (i) different methods, (ii) different temperatures and (iii) different duration of the annealing process. Preliminary p + /n and Schottky junctions were also investigated as simple test devices. 1) Heavy doping by ion implantation of single off-axis 4H-SiC layers The electrical investigation is one of the most important characterization of ion-implanted samples, which must be submitted to mandatory post-implant thermal treatment in order to both (i) recover the lattice after ion bombardment, and (ii) address the implanted impurities into lattice sites so that they can effectively act as dopants. Electrical investigation can give fundamental information on the efficiency of the electrical impurity activation. To understand the results of the research it should be noted that: (a) To realize good ohmic contacts it is necessary to obtain spatially defined highly doped regions, which must have conductivity as low as possible. (b) It has been shown that the electrical activation efficiency and the electrical conductivity increase with the annealing temperature increasing. (c) To maximize the layer conductivity, temperatures around 1700°C are generally used and implantation density high till to 10 21 cm -3 . In this work, an original approach, different from (c), is explored by the using very high annealing temperature, around 2000°C, on samples of Al + -implant concentration of the order of 10 20 cm -3 . Several Al + -implanted 4H-SiC samples, resulting of p-type conductivity, were investigated, with a nominal density varying in the range of about 1-5∙10 20 cm -3 and subjected to two different high temperature thermal treatments. One annealing method uses a radiofrequency heated furnace till to 1950°C (Conventional Annealing, CA), the other exploits a microwave field, providing a fast heating rate up to 2000°C (Micro-Wave Annealing, MWA). In this contest, mainly ion implanted p-type samples were investigated, both off-axis and on-axis <0001> semi-insulating 4H-SiC. Concerning p-type off-axis samples, a high electrical activation of implanted Al (50-70%) and a compensation ratio below 10% were estimated. In the work, the main sample processing parameters have been varied, as the implant temperature, CA annealing duration, and heating/cooling rates, and the best values assessed. MWA method leads to higher hole density and lower mobility than CA in equivalent ion implanted layers, resulting in lower resistivity, probably related to the 50°C higher annealing temperature. An optimal duration of the CA treatment was estimated in about 12-13 minutes. A RT resistivity on the lowest reported in literature for this kind of samples, has been obtained. 2) Low resistivity data: variable range hopping Notwithstanding the heavy p-type doping levels, the carrier density remained less than the critical one required for a semiconductor to metal transition. However, the high carrier densities obtained was enough to trigger a low temperature impurity band (IB) conduction. In the heaviest doped samples, such a conduction mechanism persists till to RT, without significantly prejudice the mobility values. This feature can have an interesting technological fall, because it guarantee a nearly temperature- independent carrier density, it being not affected by freeze-out effects. The usual transport mechanism occurring in the IB conduction is the nearest neighbor hopping: such a regime is effectively consistent with the resistivity temperature behavior of the lowest doped samples. In the heavier doped samples, however, a trend of the resistivity data compatible with a variable range hopping (VRH) conduction has been pointed out, here highlighted for the first time in p-type 4H-SiC. Even more: in the heaviest doped samples, and in particular, in those annealed by MWA, the temperature dependence of the resistivity data is consistent with a reduced dimensionality (2D) of the VRH conduction. In these samples, TEM investigation pointed out faulted dislocation loops in the basal plane, whose average spacing along the c-axis is comparable with the optimal length of the hops in the VRH transport. This result suggested the assignment of such a peculiar behavior to a kind of spatial confinement into a plane of the carrier hops. 3) Test device the p + -n junction In the last part of the work, the electrical properties of 4H-SiC diodes were also studied. In this case, a heavy Al + ion implantation was realized on n-type epilayers, according to the technological process applied for final devices. Good rectification properties was shown from these preliminary devices in their current-voltage characteristics. Admittance spectroscopy and deep level transient spectroscopy measurements showed the presence of electrically active defects other than the dopants ones, induced in the active region of the diodes by ion implantation. A critical comparison with the literature of these defects was performed. Preliminary to such an investigation, it was assessed the experimental set up for the admittance spectroscopy and current-voltage investigation and the automatic control of these measurements.

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The so-called parallel multisplitting nonstationary iterative Model A was introduced by Bru, Elsner, and Neumann [Linear Algebra and its Applications 103:175-192 (1988)] for solving a nonsingular linear system Ax = b using a weak nonnegative multisplitting of the first type. In this paper new results are introduced when A is a monotone matrix using a weak nonnegative multisplitting of the second type and when A is a symmetric positive definite matrix using a P -regular multisplitting. Also, nonstationary alternating iterative methods are studied. Finally, combining Model A and alternating iterative methods, two new models of parallel multisplitting nonstationary iterations are introduced. When matrix A is monotone and the multisplittings are weak nonnegative of the first or of the second type, both models lead to convergent schemes. Also, when matrix A is symmetric positive definite and the multisplittings are P -regular, the schemes are also convergent.

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Except for the "practical exercises" section, this work is registered under the following ISBN numbers: 978-84-15768-61-6 and 978-84-15768-62-3