We propose and numerically investigate a versatile and easy-to-realize configuration for a guided-wave voltage-tunable distributed feedback grating based on reorientation in nematic liquid crystal and coplanar comb electrodes. The device has a wide tuning range exceeding 100 nm and covers C and L bands for wavelength division multiplexing. (C) 2010 Optical Society of Americ
We demonstrate liquid crystal-based integrated optical devices with >140GHz electrical tuning for...
A guided-wave optical routing/switching device using nematic liquid crystals has been investigated i...
Novel liquid crystal-based integrated optical devices with >140GHz electrical tuning are presente...
We propose and numerically investigate a versatile and easy-to-realize configuration for a guided-wa...
We design a distributed feedback guided-wave device in liquid crystals, utilizing a simple geometry ...
We design a distributed feedback guided-wave device in liquid crystals, utilizing a simple geometry ...
A distributed feedback guided-wave device is proposed and analyzed numerically in liquid crystals wi...
Nematic liquid crystals (NLC) consist of dielectrically anisotropic molecules in a fluid state; unde...
We design a distributed feedback guided-wave device in liquid crystals, utilizing a simple geometry ...
We report on the experimental demonstration of electrically tunable Bragg grating using liquid cryst...
We demonstrate 114GHz electrically tunable liquid crystal Bragg gratings using 170Vpp voltage. The d...
Application of a liquid crystal over a UV written planar silica waveguide provides the first electri...
Liquid crystals (LC) are increasingly finding uses in fields outside of display optics. Their strong...
We present the first experimental demonstration of an electrically tunable, first order Bragg gratin...
Liquid crystal-based integrated optical devices offer the potential for high speed and dynamically t...
We demonstrate liquid crystal-based integrated optical devices with >140GHz electrical tuning for...
A guided-wave optical routing/switching device using nematic liquid crystals has been investigated i...
Novel liquid crystal-based integrated optical devices with >140GHz electrical tuning are presente...
We propose and numerically investigate a versatile and easy-to-realize configuration for a guided-wa...
We design a distributed feedback guided-wave device in liquid crystals, utilizing a simple geometry ...
We design a distributed feedback guided-wave device in liquid crystals, utilizing a simple geometry ...
A distributed feedback guided-wave device is proposed and analyzed numerically in liquid crystals wi...
Nematic liquid crystals (NLC) consist of dielectrically anisotropic molecules in a fluid state; unde...
We design a distributed feedback guided-wave device in liquid crystals, utilizing a simple geometry ...
We report on the experimental demonstration of electrically tunable Bragg grating using liquid cryst...
We demonstrate 114GHz electrically tunable liquid crystal Bragg gratings using 170Vpp voltage. The d...
Application of a liquid crystal over a UV written planar silica waveguide provides the first electri...
Liquid crystals (LC) are increasingly finding uses in fields outside of display optics. Their strong...
We present the first experimental demonstration of an electrically tunable, first order Bragg gratin...
Liquid crystal-based integrated optical devices offer the potential for high speed and dynamically t...
We demonstrate liquid crystal-based integrated optical devices with >140GHz electrical tuning for...
A guided-wave optical routing/switching device using nematic liquid crystals has been investigated i...
Novel liquid crystal-based integrated optical devices with >140GHz electrical tuning are presente...