Achieving monolithic integration of nonreciprocal photonic devices on semiconductor substrates has been long sought by the photonics research society. One way to achieve this goal is to deposit high quality magneto-optical oxide thin films on a semiconductor substrate. In this paper, we review our recent research activity on magneto-optical oxide thin films toward the goal of monolithic integration of nonreciprocal photonic devices on silicon. We demonstrate high Faraday rotation at telecommunication wavelengths in several novel magnetooptical oxide thin films including Co substituted CeO2−δ, Co- or Fe-substituted SrTiO3−δ, as well as polycrystalline garnets on silicon. Figures of merit of 3~4 deg/dB and 21 deg/dB are achieved in epitaxial ...
The objective of this study is to theoretically devise an on-chip optical isolator which is monolith...
© 2017 Author(s). This report describes the fabrication, characterization, and transfer of ultra-com...
In pursuit of beyond CMOS computing, this thesis aims to provide material solutions for both photoni...
Achieving monolithic integration of nonreciprocal photonic devices on semiconductor substrates has b...
Monolithic integration of nonreciprocal optical devices on semiconductor substrates has been a long-...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...
© 2019 Optical Society of America. Integrated optical isolators have been a longstanding challenge f...
Photonic integrated circuits require magneto-optical (MO) materials for making nonreciprocal devices...
We report on our progress towards the integration of nonreciprocal optical elements in, for example,...
Photonic integrated circuits require magneto-optical (MO) materials for making nonreciprocal devices...
We report two novel strategies to integrate magneto-optical oxides on oxidized silicon and SOI platf...
<p>Photonic integration has proved remarkably successful in combining multiple optical devices...
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...
On-chip optical isolators constitute an essential building block for photonic integrated circuits. M...
The objective of this study is to theoretically devise an on-chip optical isolator which is monolith...
© 2017 Author(s). This report describes the fabrication, characterization, and transfer of ultra-com...
In pursuit of beyond CMOS computing, this thesis aims to provide material solutions for both photoni...
Achieving monolithic integration of nonreciprocal photonic devices on semiconductor substrates has b...
Monolithic integration of nonreciprocal optical devices on semiconductor substrates has been a long-...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...
© 2019 Optical Society of America. Integrated optical isolators have been a longstanding challenge f...
Photonic integrated circuits require magneto-optical (MO) materials for making nonreciprocal devices...
We report on our progress towards the integration of nonreciprocal optical elements in, for example,...
Photonic integrated circuits require magneto-optical (MO) materials for making nonreciprocal devices...
We report two novel strategies to integrate magneto-optical oxides on oxidized silicon and SOI platf...
<p>Photonic integration has proved remarkably successful in combining multiple optical devices...
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...
On-chip optical isolators constitute an essential building block for photonic integrated circuits. M...
The objective of this study is to theoretically devise an on-chip optical isolator which is monolith...
© 2017 Author(s). This report describes the fabrication, characterization, and transfer of ultra-com...
In pursuit of beyond CMOS computing, this thesis aims to provide material solutions for both photoni...