Athermal silicon subwavelength grating waveguides are demonstrated. We report the results of numerical simulations and experiments for the waveguide thermo-optic coefficients, as well as fabrication tolerances and the thermal bandwidth. \ua9 2011 IEEE.Peer reviewed: YesNRC publication: Ye
In this paper, athermal silicon waveguides using bridged subwavelength grating (BSWG) structures are...
We present a design for a temperature insensitive Mach-Zehnder interferometer in which temperature c...
We present a design for a temperature insensitive Mach-Zehnder interferometer in which temperature c...
Athermal silicon subwavelength grating waveguides are demonstrated. We report the results of numeric...
In this paper, athermal subwavelength grating (SWG) waveguides are investigated. Both numerical simu...
We present a method for designing temperature independent silicon waveguide devices using the subwav...
We present a method for designing temperature independent silicon waveguide devices using the subwav...
In this paper, athermal silicon waveguides using bridged subwavelength grating (BSWG) structures are...
In this paper, athermal silicon waveguides using bridged subwavelength grating (BSWG) structures are...
Our progress in subwavelength structures in silicon waveguides is reviewed. Several practical implem...
We demonstrate, by experiment and numerical calculations, temperature-independent subwavelength grat...
Athermal operation of silicon waveguides for the TM and TE mode is achieved using the bridged subwav...
We demonstrate, by experiment and numerical calculations, temperature-independent subwavelength grat...
Our progress in subwavelength structures in silicon waveguides is reviewed. Several practical implem...
We demonstrate, by experiment and numerical calculations, temperature-independent subwavelength grat...
In this paper, athermal silicon waveguides using bridged subwavelength grating (BSWG) structures are...
We present a design for a temperature insensitive Mach-Zehnder interferometer in which temperature c...
We present a design for a temperature insensitive Mach-Zehnder interferometer in which temperature c...
Athermal silicon subwavelength grating waveguides are demonstrated. We report the results of numeric...
In this paper, athermal subwavelength grating (SWG) waveguides are investigated. Both numerical simu...
We present a method for designing temperature independent silicon waveguide devices using the subwav...
We present a method for designing temperature independent silicon waveguide devices using the subwav...
In this paper, athermal silicon waveguides using bridged subwavelength grating (BSWG) structures are...
In this paper, athermal silicon waveguides using bridged subwavelength grating (BSWG) structures are...
Our progress in subwavelength structures in silicon waveguides is reviewed. Several practical implem...
We demonstrate, by experiment and numerical calculations, temperature-independent subwavelength grat...
Athermal operation of silicon waveguides for the TM and TE mode is achieved using the bridged subwav...
We demonstrate, by experiment and numerical calculations, temperature-independent subwavelength grat...
Our progress in subwavelength structures in silicon waveguides is reviewed. Several practical implem...
We demonstrate, by experiment and numerical calculations, temperature-independent subwavelength grat...
In this paper, athermal silicon waveguides using bridged subwavelength grating (BSWG) structures are...
We present a design for a temperature insensitive Mach-Zehnder interferometer in which temperature c...
We present a design for a temperature insensitive Mach-Zehnder interferometer in which temperature c...