4 resultados para knife roller

em Universidade Complutense de Madrid


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An experimental setup to measure the three-dimensional phase-intensity distribution of an infrared laser beam in the focal region has been presented. It is based on the knife-edge method to perform a tomographic reconstruction and on a transport of intensity equation-based numerical method to obtain the propagating wavefront. This experimental approach allows us to characterize a focalized laser beam when the use of image or interferometer arrangements is not possible. Thus, we have recovered intensity and phase of an aberrated beam dominated by astigmatism. The phase evolution is fully consistent with that of the beam intensity along the optical axis. Moreover, this method is based on an expansion on both the irradiance and the phase information in a series of Zernike polynomials. We have described guidelines to choose a proper set of these polynomials depending on the experimental conditions and showed that, by abiding these criteria, numerical errors can be reduced.

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El hiperadrenocorticismo (HAC) es una de las endocrinopatías más frecuentes en la especie canina, con una incidencia aproximada de 1-2/1000 perros/año. En el 80-85% de los casos el origen se encuentra en un exceso de secreción de hormona adrenocorticotropa (ACTH) provocado por un tumor hipofisario, denominándose HAC hipofisario. En el 15-20% restante el origen del HAC es un tumor (adenoma o carcinoma) adrenocortical que secreta una cantidad excesiva de glucocorticoides, denominándose HAC adrenal, y en un escaso porcentaje de casos, la etiología se sitúa ectópicamente a ambas glándulas. En la revisión bibliográfica de esta Tesis Doctoral se proporciona una visión general de la anatomía hipofisaria en la especie canina, de la regulación y de la síntesis de las hormonas hipofisarias y adrenales que intervienen en el desarrollo del HAC. Se describen los síntomas y signos clínicos de la enfermedad, los métodos de diagnóstico y las opciones terapéuticas farmacológica, quirúrgica y radioterápica...

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A few years ago, some of the authors of the paper demonstrated the resonance of optical antennas in the visible frequencies. The results of that paper were obtained using experimental techniques that were primarily developed for the measurement of antenna-coupled detectors in the infrared. In the present paper, we show the results of spatial-response mapping obtained by using a dedicated measurement station for the characterization of optical antennas in the visible. At the same time, the bottleneck in the spatial responsivity calculation represented by the beam characterization has been approached from a different perspective. The proposed technique uses a collection of knife edge measurements in order to avoid the use of any model of the laser beam irradiance. By taking all this into account we present the spatial responsivity of optical antennas measured with high spatial resolution in the visible.

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Silicon microlenses are a very important tool for coupling terahertz (THz) radiation into antennas and detectors in integrated circuits. They can be used in a large array structures at this frequency range reducing considerably the crosstalk between the pixels. Drops of photoresist have been deposited and their shape transferred into the silicon by means of a Reactive Ion Etching (RIE) process. Large silicon lenses with a few mm diameter (between 1.5 and 4.5 mm) and hundreds of μm height (between 50 and 350 μm) have been fabricated. The surface of such lenses has been characterized using Scanning Electron Microscopy (SEM) and Atomic Force Microscopy (AFM), resulting in a surface roughness of about ∼3 μm, good enough for any THz application. The beam profile at the focal plane of such lenses has been measured at a wavelength of 10.6 μm using a tomographic knife-edge technique and a CO2 laser.