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DIFFERENT MATERIALS FOR INTEGRATED OPTIC WAVEGUIDES
THEORY AND SYSTEM DESIGN
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achieved angle Appl applied attenuation beam calculated channel characteristics coefficient compared components considered constant corresponding coupler coupling crossings crystal curve dependence depth described determined devices DIEGO diffusion directional distribution doping effect efficiency electric field electrode electrooptic etching exchange experimental fabrication fiber fibre field Figure frequency function given gives glass grating increase indices integrated optics intensity interaction laser layer length Lett LIBRARY light limited lithium lithography loss material measured method mode modulation obtained operation optical waveguides output parameters pattern performance periodic phase Phys planar polarization possible present produced propagation properties range ratio reduced References refractive index region relative resonance respectively response sample semiconductor shows signal single structure substrate surface switching Table technique temperature thickness UNIVERS variation voltage wave waveguide wavelength width