748 resultados para Responsibility extended producer


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To obtain accurate information from a structural tool it is necessary to have an understanding of the physical principles which govern the interaction between the probe and the sample under investigation. In this thesis a detailed study of the physical basis for Extended X-ray Absorption Fine Structure (EXAFS) spectroscopy is presented. A single scattering formalism of EXAFS is introduced which allows a rigorous treatment of the central atom potential. A final state interaction formalism of EXAFS is also discussed. Multiple scattering processes are shown to be significant for systems of certain geometries. The standard single scattering EXAFS analysis produces erroneous results if the data contain a large multiple scattering contribution. The effect of thermal vibrations on such multiple scattering paths is also discussed. From symmetry considerations it is shown that only certain normal modes contribute to the Debye-Waller factor for a particular scattering path. Furthermore, changes in the scattering angles induced by thermal vibrations produces additional EXAFS components called modification factors. These factors are shown to be small for most systems.

A study of the physical basis for the determination of structural information from EXAFS data is also presented. An objective method of determining the background absorption and the threshold energy is discussed and involves Gaussian functions. In addition, a scheme to determine the nature of the scattering atom in EXAFS experiments is introduced. This scheme is based on the fact that the phase intercept is a measure of the type of scattering atom. A method to determine bond distances is also discussed and does not require the use of model compounds or calculated phase shifts. The physical basis for this method is the absence of a linear term in the scattering phases. Therefore, it is possible to separate these phases from the linear term containing the distance information in the total phase.

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The concept of an extended fractional Fourier transform (FRT) is suggested. Previous PBT's and complex FRT's are only its subclasses. Then, through this concept and its method, we explain the physical meaning of any optical Fresnel diffraction through a lens: It is just an extended FRT; a lens-cascaded system can equivalently be simplified to a simple analyzer of the FRT; the two-independent-parameter FRT of an object illuminated with a plane wave can be readily implemented by a lens of arbitrary focal length; when cascading, the Function of each lens unit and the relationship between the adjacent ones are clear and simple; and more parameters and fewer restrictions on cascading make the optical design easy. (C) 1997 Optical Society of America.

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We describe the use of a Wigner distribution function approach for exploring the problem of extending the depth of field in a hybrid imaging system. The Wigner distribution function, in connection with the phase-space curve that formulates a joint phase-space description of an optical field, is employed as a tool to display and characterize the evolving behavior of the amplitude point spread function as a wave propagating along the optical axis. It provides a comprehensive exhibition of the characteristics for the hybrid imaging system in extending the depth of field from both wave optics and geometrical optics. We use it to analyze several well-known optical designs in extending the depth of field from a new viewpoint. The relationships between this approach and the earlier ambiguity function approach are also briefly investigated. (c) 2006 Optical Society of America.

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In this paper an electrically controllable radial birefringent pupil filter is proposed. It consists of two polarizers and an improved electrically controllable optical azimuth rotator which has two lambda/4 retarders, one electro-optical crystal and one radial birefringent crystal. The evolution and distribution of polarization states of this pupil filter are discussed. The most interesting and useful advantage of such a structure is that the characteristic of transverse superresolution and axial extended focal depth or focal shift can be obtained merely by controlling the applied voltage on the electro-optical crystal. The radial birefringent crystal azimuth angle cooperating with different electrical inductive phase differences will determine the transverse and axial intensity distribution. It is shown that for particular ranges of electrical inductive phase difference it is possible to obtain transverse superresolution along with extended focal depth or with a focal shift.

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By properly designing a phase pupil mask to modulate or encode the optical images and then digitally restoring them, one can greatly extend the depth of field and improve image quality. The original works done by Dowski and Cathey introduce the use of a cubic phase pupil mask to extend the depth of field. The theoretical and experimental researches all verified its effectiveness. In this paper, we suggest the use of an exponential phase pupil mask to extend the depth of field. This phase mask has two variable parameters for designing to control the shape of the mask so as to modulate the wave-front more flexible. We employ an optimization procedure based on the Fisher information metric to obtain the optimum values of the parameters for the exponential and the cubic masks, respectively. A series of performance comparisons between these two optimized phase masks in extending the depth of field are then done. The results show that the exponential phase mask provide slight advantage to the cubic one in several aspects. (c) 2006 Elsevier B.V. All rights reserved.

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A inserção do psicólogo no campo da saúde vem crescendo de forma considerável no âmbito nacional, principalmente nas últimas duas décadas. Está concentrada aí, atualmente, a maior oferta de vagas em concursos públicos para psicólogos, bem como uma ampliação de oportunidades na rede privada. Trata-se de um cenário bastante amplo, que inclui a atenção básica (postos de saúde, Programa de Saúde da Família, entre outros), a assistência às demandas de saúde mental (Centros de Atenção Psicossocial, rede ambulatorial e hospitais psiquiátricos), além de institutos, hospitais especializados e hospitais gerais (HGs). Em franco processo de estruturação, o campo da psicologia na saúde é marcado por pluralidades de papéis, demandas e histórias, principalmente no que tange ao contexto do HG, onde a especificidade da psicologia permanece até hoje um tanto quanto enigmática. A escassez dos dados sobre a entrada de psicólogos em HGs no Rio de Janeiro apontou o caminho que nossas buscas deveriam assumir. Assim, o objeto desta tese é discutir alguns dos diferentes fazeres do psicólogo no HG. Para tanto, optamos por um percurso que inevitavelmente nos levou a uma perspectiva histórica. Na busca de elementos que pudessem contar quando e como a psicologia se tornou uma especialidade presente nos hospitais gerais, procuramos os agentes precursores desta empreitada, aqueles que participaram ativamente da construção desse espaço como um dos lugares da psicologia na saúde. Foram realizadas cinco entrevistas com personagens dessa história no contexto fluminense, psicólogas que, cada uma em seu hospital e em um dado momento histórico, tiveram papel decisivo para que a psicologia se tornasse uma especialidade legitimada nesse cenário. Tivemos ainda como fontes de pesquisa alguns relatórios, conversas de bastidores, visitas a alguns HGs e a própria vivência da autora desta tese como psicóloga vinculada à Secretaria Estadual de Saúde e Defesa Civil do Rio de Janeiro (SESDEC/RJ). Verificamos que a história da psicologia nos HG no Rio de Janeiro é significativamente recente, oficializando-se em 1990 com a realização do primeiro concurso público com provimento de vagas para psicólogos em HGs vinculados à SES/RJ (atual SESDEC). Outros concursos ampliaram as equipes e a configuração de uma rotina na qual a palavra de ordem passou a ser a atenção ao risco psicossocial. Até esse ponto, no entanto, foram travadas muitas batalhas: entre os psicólogos e as demais equipes, entre os novos psicólogos e as direções das suas unidades de saúde, entre psicólogos estatutários e psicólogos prestadores, entre psicólogos e a própria psicologia. Nossa empreitada privilegiou a narrativa desses personagens, as histórias por eles contadas, que nos auxiliaram na composição pregressa e atual da psicologia no HG no Rio de Janeiro. São memórias que contam das dificuldades e das vitórias de cada um desses momentos, na tentativa de se definir o quase indefinível lugar da psicologia no HG. Nosso trabalho pretendeu construir um dos possíveis mapas desse campo, objetivando, com isso, fornecer subsídios para que psicólogos possam ampliar seus estilos e coletivos de pensamento em prol de um exercício profissional ético e responsável.

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By introducing the scattering probability of a subsurface defect (SSD) and statistical distribution functions of SSD radius, refractive index, and position, we derive an extended bidirectional reflectance distribution function (BRDF) from the Jones scattering matrix. This function is applicable to the calculation for comparison with measurement of polarized light-scattering resulting from a SSD. A numerical calculation of the extended BRDF for the case of p-polarized incident light was performed by means of the Monte Carlo method. Our numerical results indicate that the extended BRDF strongly depends on the light incidence angle, the light scattering angle, and the out-of-plane azimuth angle. We observe a 180 degrees symmetry with respect to the azimuth angle. We further investigate the influence of the SSD density, the substrate refractive index, and the statistical distributions of the SSD radius and refractive index on the extended BRDF. For transparent substrates, we also find the dependence of the extended BRDF on the SSD positions. (c) 2006 Optical Society of America.

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The refractive indices of thin films, containing dielectric and voids in an oblique columnar structure, are modeled by extended effective medium in the quasi-static limit. The dielectric function is shown to be strongly dependent on the angle of incidence and on the columnar orientation for p-polarized light. This model is applied to model ZrO2 thin films with oblique columnar structures and the computed results, with the Maxwell Garnett, the Bragg-Pippard, and the Bruggeman formalisms, have been given. (c) 2004 Elsevier B.V. All rights reserved.