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Fabrication and Determination of Refractive Index Profile of the Planar Waveguides by Wedge Technique
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作者 S. M. R. Sadat Hosseini A. Darudi 《光学学报》 EI CAS CSCD 北大核心 2003年第S1期309-310,共2页
Several planar waveguides have been fabricated. The waveguides have been polished for determination of their refractive index profiles (RIP) by wedge method. The RIP determined by inserting the sample in a Mach-Zehnde... Several planar waveguides have been fabricated. The waveguides have been polished for determination of their refractive index profiles (RIP) by wedge method. The RIP determined by inserting the sample in a Mach-Zehnder interferometer and applying fringe analysis methods. 展开更多
关键词 of in In AS for by that Fabrication and Determination of refractive index profile of the Planar Waveguides by Wedge Technique
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Near-stoichiometric Ti:LiNbO3 strip waveguide with varied substrate refractive index in waveguide layer
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作者 张德龙 吴嫦 潘裕斌 《Chinese Physics B》 SCIE EI CAS CSCD 2010年第2期329-335,共7页
We report the near-stoichiometric Ti:LiNbO3 strip waveguides fabricated by vapour transport equilibration (VTE) at 1060~^{/circ}C for 12 h and co-diffusion of 4--8~/mu m wide, 115-nm thick Ti-strips. Optical stud... We report the near-stoichiometric Ti:LiNbO3 strip waveguides fabricated by vapour transport equilibration (VTE) at 1060~^{/circ}C for 12 h and co-diffusion of 4--8~/mu m wide, 115-nm thick Ti-strips. Optical studies show that these waveguides are monomode at 1.5~/mu m and have losses of 1.3 and 1.1~dB/cm for the TM and TE modes, respectively. In the waveguide width/depth direction, the mode field follows a Gauss/Hermite--Gauss profile. A secondary ion mass spectrometry study reveals that the Ti profile follows a sum of two error functions along the width direction and a complementary error function in the depth direction. Micro-Raman analysis shows that the Li-composition in the depth direction also follows a complementary error function. The mean Li/Nb ratio in the waveguide layer is about 0.98. The inhomogeneous Li-composition profile results in a varied substrate index in the guiding layer, and the refractive index profile in the guiding layer is given. 展开更多
关键词 near-stoichiometric Ti:LiNbO3 strip waveguide varied substrate refractive index Li-composition profile 2D refractive index profile
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Modelling of Energy Storage Photonic Medium by Wavelength-Based Multivariable Second-Order Differential Equation 被引量:1
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作者 T.Binesh 《Computer Modeling in Engineering & Sciences》 SCIE EI 2020年第4期333-351,共19页
Wavelength-dependent mathematical modelling of the differential energy change of a photon has been performed inside a proposed hypothetical optical medium.The existence of this medium demands certain mathematical cons... Wavelength-dependent mathematical modelling of the differential energy change of a photon has been performed inside a proposed hypothetical optical medium.The existence of this medium demands certain mathematical constraints,which have been derived in detail.Using reverse modelling,a medium satisfying the derived conditions is proven to store energy as the photon propagates from the entry to exit point.A single photon with a given intensity is considered in the analysis and hypothesized to possess a definite non-zero probability of maintaining its energy and velocity functions analytic inside the proposed optical medium,despite scattering,absorption,fluorescence,heat generation,and other nonlinear mechanisms.The energy and velocity functions are thus singly and doubly differentiable with respect to wavelength.The solution of the resulting second-order differential equation in two variables proves that energy storage or energy flotation occurs inside a medium with a refractive index satisfying the described mathematical constraints.The minimum-value-normalized refractive index profiles of the modelled optical medium for transformed wavelengths both inside the medium and for vacuum have been derived.Mathematical proofs,design equations,and detailed numerical analyses are presented in the paper. 展开更多
关键词 Optical medium modelling energy storage multivariable second order differential equation numerical analysis minimum value-normalized refractive index profile
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