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Measurement of Particle Size Distribution in Turbid Solutions by Dynamic Light Scattering Microscopy
Published on: January 9, 2017
Light concentration in the near-field of dielectric spheroidal particles with mesoscopic sizes
Manuel J Mendes1, Ignacio Tobías, Antonio Martí
1Instituto de Energía Solar, E.T.S.I. Telecomunicación, Universidad Politécnica de Madrid, Ciudad Universitaria, Avda. Complutense 30, 28040 Madrid, Spain. manuel.mendes@ies-def.upm.es
Abstract:
This paper presents a numerical study of the light focusing properties of dielectric spheroids with sizes comparable to the illuminating wavelength. An analytical separation-of-variables method is used to determine the electric field distribution inside and in the near-field outside the particles. An optimization algorithm was implemented in the method to determine the particles' physical parameters that maximize the forward scattered light in the near-field region. It is found that such scatterers can exhibit pronounced electric intensity enhancement (above 100 times the incident intensity) in their close vicinity, or along wide focal regions extending to 10 times the wavelength. The results reveal the potential of wavelength-sized spheroids to manipulate light beyond the limitations of macroscopic geometrical optics. This can be of interest for several applications, such as light management in photovoltaics.
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