Silicon photonics has gained interest for its potential to provide higher efficiency, bandwidth and reduced power consumption compared to electrical interconnects in datacenters and high performance computing environments. However, it is well known that silicon photonic devices suffer from temperature fluctuations due to silicon's high thermo-optic coefficient and therefore, temperature control in many applications is required. Here we present an athermal optical add-drop multiplexer fabricated from ring resonators. We used a sol-gel inorganic-organic hybrid material as an alternative to previously used materials such as polymers and titanium dioxide. In this work we studied the thermal curing parameters of the sol-gel and their effect on t...
We report that completely athermal design of a slotted silicon waveguide is possible by combining th...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...
We present a general approach to design temperature-independent high-index-contrast (HIC) waveguides...
Advances in photonic materials are critical to the progress of photonic devices and optical systems....
We demonstrate athermal amorphous Si (a-Si) ring resonators using a top polymer cladding. We observe...
Athermal silicon ring resonators are experimentally demonstrated by overlaying a polymer cladding on...
Athermal silicon ring resonators are experimentally demonstrated by overlaying a polymer cladding on...
Athermal silicon ring resonators are experimentally demonstrated by overlaying a polymer cladding on...
Athermal silicon ring resonators are experimentally demonstrated by overlaying a polymer cladding on...
Athermal silicon ring resonators are experimentally demonstrated by overlaying a polymer cladding on...
We report on the design, fabrication, and characterization of temperature insensitive strip silicon-...
We report on the design, fabrication, and characterization of temperature insensitive strip silicon-...
Athermal silicon ring resonators are experimentally demonstrated by overlaying a polymer cladding on...
We report that completely athermal design of a slotted silicon waveguide is possible by combining th...
We report that completely athermal design of a slotted silicon waveguide is possible by combining th...
We report that completely athermal design of a slotted silicon waveguide is possible by combining th...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...
We present a general approach to design temperature-independent high-index-contrast (HIC) waveguides...
Advances in photonic materials are critical to the progress of photonic devices and optical systems....
We demonstrate athermal amorphous Si (a-Si) ring resonators using a top polymer cladding. We observe...
Athermal silicon ring resonators are experimentally demonstrated by overlaying a polymer cladding on...
Athermal silicon ring resonators are experimentally demonstrated by overlaying a polymer cladding on...
Athermal silicon ring resonators are experimentally demonstrated by overlaying a polymer cladding on...
Athermal silicon ring resonators are experimentally demonstrated by overlaying a polymer cladding on...
Athermal silicon ring resonators are experimentally demonstrated by overlaying a polymer cladding on...
We report on the design, fabrication, and characterization of temperature insensitive strip silicon-...
We report on the design, fabrication, and characterization of temperature insensitive strip silicon-...
Athermal silicon ring resonators are experimentally demonstrated by overlaying a polymer cladding on...
We report that completely athermal design of a slotted silicon waveguide is possible by combining th...
We report that completely athermal design of a slotted silicon waveguide is possible by combining th...
We report that completely athermal design of a slotted silicon waveguide is possible by combining th...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...
We present a general approach to design temperature-independent high-index-contrast (HIC) waveguides...