We report the development of a silicon integrated circuit that combines conventional electronic circuitry with all-silicon optical waveguides, detectors and modulators. The circuit functions as an optical channel power leveller by amplifying current from a photodetector and feeding that current back to a modulator on the same waveguide. This article describes the use of local oxidation of silicon (LOCOS) for optical waveguide fabrication, the use of deep diffused wells to ensure electrical isolation between the forward biased modulator and detector diodes, and defect-engineering of the photodiodes to give them sufficient responsivity at the operating wavelength of 1.55 μm
On-chip optical power monitors are essential elements to calibrate, stabilize, and reconfigure photo...
Silicon is a low-cost material platform in which it is possible to form photonic integrated circuits...
The goal of this work is to enhance the performance of and demonstrate new applications for silicon ...
Silicon Photonics taps on the volume manufacturing capability of traditional silicon manufacturing t...
Abstract—Silicon photonics could enable a chip-scale platform for monolithic integration of optics a...
AbstractA full analysis of an optoelectronic circuit on silicon composed by a light emitter, an opti...
We experimentally demonstrate an on-chip compact and simple to fabricate silicon Schottky photodetec...
In this paper we report a novel fabrication technique for silicon photonic waveguides with sub-micro...
This work presents a novel integrable silicon photodetector which can only be conceived as part of a...
In this paper we report a novel fabrication technique for silicon photonic waveguides with sub-micro...
In this paper we elaborate on our development of silicon photonic integrated circuits operating at w...
A monolithic silicon CMOS optoelectronic integrated circuit (OEIC) is designed and fabricated with s...
Silicon (Si) photonics is the science and technology of using the group-IV element of the periodic t...
This paper presents the integration on the same glass substrate of an amorphous silicon photodiode a...
Thesis (Ph.D.)--University of Washington, 2014Photonic integration in silicon is an extremely promis...
On-chip optical power monitors are essential elements to calibrate, stabilize, and reconfigure photo...
Silicon is a low-cost material platform in which it is possible to form photonic integrated circuits...
The goal of this work is to enhance the performance of and demonstrate new applications for silicon ...
Silicon Photonics taps on the volume manufacturing capability of traditional silicon manufacturing t...
Abstract—Silicon photonics could enable a chip-scale platform for monolithic integration of optics a...
AbstractA full analysis of an optoelectronic circuit on silicon composed by a light emitter, an opti...
We experimentally demonstrate an on-chip compact and simple to fabricate silicon Schottky photodetec...
In this paper we report a novel fabrication technique for silicon photonic waveguides with sub-micro...
This work presents a novel integrable silicon photodetector which can only be conceived as part of a...
In this paper we report a novel fabrication technique for silicon photonic waveguides with sub-micro...
In this paper we elaborate on our development of silicon photonic integrated circuits operating at w...
A monolithic silicon CMOS optoelectronic integrated circuit (OEIC) is designed and fabricated with s...
Silicon (Si) photonics is the science and technology of using the group-IV element of the periodic t...
This paper presents the integration on the same glass substrate of an amorphous silicon photodiode a...
Thesis (Ph.D.)--University of Washington, 2014Photonic integration in silicon is an extremely promis...
On-chip optical power monitors are essential elements to calibrate, stabilize, and reconfigure photo...
Silicon is a low-cost material platform in which it is possible to form photonic integrated circuits...
The goal of this work is to enhance the performance of and demonstrate new applications for silicon ...