Waveguide stress engineering and compatible passivation in planar lightwave circuits

A planar lightwave circuit includes at least one optical waveguide core, and at least one feature proximate the core having a stress-engineered property to balance stress and therefore minimize birefringence affecting the core. A protective passivation layer is formed over the core and the feature t...

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Hauptverfasser: DONG ZI-WEN, VAIDYANATHAN ANANTHARAMAN, EGAN ERIK W, THEKDI SANJAY M, YAN YINGCHAO, GOPINATHAN NIRANJAN, BRAINARD ROBERT JAMES, BHARDWAJ JYOTI KIRON, NAKAMOTO DAVID K, NGUYEN THOMAS THUAN, DOUGHERTY DAVID, YAMADA HIROAKI
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creator DONG ZI-WEN
VAIDYANATHAN ANANTHARAMAN
EGAN ERIK W
THEKDI SANJAY M
YAN YINGCHAO
GOPINATHAN NIRANJAN
BRAINARD ROBERT JAMES
BHARDWAJ JYOTI KIRON
NAKAMOTO DAVID K
NGUYEN THOMAS THUAN
DOUGHERTY DAVID
YAMADA HIROAKI
description A planar lightwave circuit includes at least one optical waveguide core, and at least one feature proximate the core having a stress-engineered property to balance stress and therefore minimize birefringence affecting the core. A protective passivation layer is formed over the core and the feature to be substantially non-interfering with the balanced stress provided by the feature. The stress balancing feature may be an overcladding layer formed over the core, doped to have a coefficient of thermal expansion approximately matched to that of an underlying substrate, to symmetrically distribute stress in an undercladding between the overcladding and the substrate, away from the core. The protective passivation layer is formed to have a coefficient of thermal expansion approximately matched to that of the overcladding. In one exemplary embodiment, the passivation layer is formed from silicon nitride. Related concepts of stress release grooves, and core overetching, are also disclosed.
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OPTICS
PHYSICS
title Waveguide stress engineering and compatible passivation in planar lightwave circuits
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