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The synthesis of homogeneous and pure silica alumina binary glasses doped with rare-earth (RE) ions such as Er3+ is currently a key challenge for the development of integrated optics devices such as lasers, optical amplifiers or waveguides.
The results can be a guide for the coherent control of the matter waves in optical lattices and the design of new atom optics devices.
Thus, our study could be useful for the design of phonon optics devices.
The boundary element method can provide accurate solutions to the electromagnetic problem in numerical simulations of electron optics devices.
By appropriately designing the structure, it can be utilized to realize some optics devices such as multiple-wavelength sorter and beam splitter.
Such a unique textured surface imparts many promising potentials for engineering and the development of optics devices with robust superhydrophobic materials.
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Such a transformation optics device can concentrate the current into a designed central region and enhance the current density inside.
In this paper we report the structural polarization conversion effect occurring in an integrated optics device formed by two vertically stacked ring resonators excited through an underlying bus waveguide.
Shin, D; Urzhumov, Y; Lim, D; Kim, K; Smith, DR, A versatile smart transformation optics device with auxetic elasto-electromagnetic metamaterials., Scientific Reports, vol. 4 (January, 2014), pp. 4084 [doi] [abs].
JS and ZY is an associate professor and MS-degree holder specializing in optics and optical devices.
"Whispering gallery" effect confines electrons, could provide basis for new electron-optics devices.
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