<p>Photonic integration has proved remarkably successful in combining multiple optical devices onto a single chip with the benefits of added functionality, and reduction in costs, arising from the replacement of manual assembly and alignment of individual components with lithographic techniques. However, the incorporation of optical isolators and related non-reciprocal devices within standard optoelectronic wafer platforms is exceptionally challenging. Preferred magneto-optic materials cannot be exploited as waveguide core layers on semiconductor wafers due to a lower refractive index. Another difficulty is the phase velocity mismatch as a consequence of the inherent structural birefringence associated with waveguide geometries.</p...
Achieving monolithic integration of nonreciprocal photonic devices on semiconductor substrates has b...
Abstract: We present the development of a metal-semiconductor contact for a TM-mode amplifying waveg...
We present the development of a metal-semiconductor contact for a TM-mode amplijying waveguide optic...
We report on our progress towards the integration of nonreciprocal optical elements in, for example,...
Monolithic integration of nonreciprocal optical devices on semiconductor substrates has been a long-...
Strategies are developed for obtaining nonreciprocal polarization mode conversion, also known as Far...
We report two novel strategies to integrate magneto-optical oxides on oxidized silicon and SOI platf...
An optical isolator for transverse electric (TE) polarized light is demonstrated by adhesive bonding...
We demonstrate an optical isolator integrated with a silicon-on-insulator waveguide platform realize...
This project is aimed at the integration of a polarisation-insensitive optical waveguide isolator on...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...
The objective of this study is to theoretically devise an on-chip optical isolator which is monolith...
Simulations demonstrate that undoped yttrium iron garnet (YIG) seedlayers cause reduced Faraday rota...
Faraday rotators in optical isolators, typically composed of iron garnets, are photonic analogues of...
Silicon waveguide optical non-reciprocal devices based on the magneto-optical effect are reviewed. T...
Achieving monolithic integration of nonreciprocal photonic devices on semiconductor substrates has b...
Abstract: We present the development of a metal-semiconductor contact for a TM-mode amplifying waveg...
We present the development of a metal-semiconductor contact for a TM-mode amplijying waveguide optic...
We report on our progress towards the integration of nonreciprocal optical elements in, for example,...
Monolithic integration of nonreciprocal optical devices on semiconductor substrates has been a long-...
Strategies are developed for obtaining nonreciprocal polarization mode conversion, also known as Far...
We report two novel strategies to integrate magneto-optical oxides on oxidized silicon and SOI platf...
An optical isolator for transverse electric (TE) polarized light is demonstrated by adhesive bonding...
We demonstrate an optical isolator integrated with a silicon-on-insulator waveguide platform realize...
This project is aimed at the integration of a polarisation-insensitive optical waveguide isolator on...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...
The objective of this study is to theoretically devise an on-chip optical isolator which is monolith...
Simulations demonstrate that undoped yttrium iron garnet (YIG) seedlayers cause reduced Faraday rota...
Faraday rotators in optical isolators, typically composed of iron garnets, are photonic analogues of...
Silicon waveguide optical non-reciprocal devices based on the magneto-optical effect are reviewed. T...
Achieving monolithic integration of nonreciprocal photonic devices on semiconductor substrates has b...
Abstract: We present the development of a metal-semiconductor contact for a TM-mode amplifying waveg...
We present the development of a metal-semiconductor contact for a TM-mode amplijying waveguide optic...