1983
DOI: 10.1007/bf00616607
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Refractive index profiles of LiNbO3: Ti waveguides

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Cited by 39 publications
(10 citation statements)
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“…The penetration depths of titanium and iron in the LiNbO, substrate are large compared to the thicknesses of the vacuum-deposited metal layers. Thus we expect [7] that the concentration profiles of both dopants can be described by Gaussian functions (diffusion from a finite source),…”
Section: Experimental Methodsmentioning
confidence: 99%
“…The penetration depths of titanium and iron in the LiNbO, substrate are large compared to the thicknesses of the vacuum-deposited metal layers. Thus we expect [7] that the concentration profiles of both dopants can be described by Gaussian functions (diffusion from a finite source),…”
Section: Experimental Methodsmentioning
confidence: 99%
“…[10]. Then the modal distribution of the guided light was calculated by solving the scalar Helmholtz equation following the finite difference approach on the obtained structure.…”
Section: Numerical Calculationsmentioning
confidence: 99%
“…The subsequent thermal indiffusion at temperatures of T 9500 1050°C for several hours (3 -15 h) results in transparent Ti:LiNbO3 films or stripes with an increased refractive index for both the ordinary (n0) as well as for the extraordinary index (ne). The refractive index profile of the increased extraordinary index is proportional to the Gaussian distribution of the indiffused titanium ions, whereas the the shape of the ordinary index profile is somewhat different [12][13][14][15]. This is due to the nonlinear dependence of the index increase An0 on the Ti-concentration.…”
Section: A Titanium Indiffusionmentioning
confidence: 99%