A transmission-type variable optical attenuator (VOA) based on a polymer-stabilized dual-frequency liquid crystal (PSDFLC) is demonstrated at λ = 1.55 μm. The VOA is highly transparent in the voltage-off state but scatters light in the voltage-on state. By using a birefringent beam displacer incorporated with half-wave plates, we can obtain a VOA that is polarization independent and that exhibits a 31 dB dynamic range. The polymer networks and dual-frequency effect together reduce the response time (rise + decay) of a 16 μm PSDFLC cell to 30 ms at room temperature and at a voltage of 24 Vrms. © 2005 Optical Society of America
In this work, a combination of a multiplexer and a variable optical attenuator in the same device (V...
In this work, a combination of a multiplexer and a variable optical attenuator in the same device (V...
Abstract—We demonstrate a variable optical attenuator (VOA) based on liquid crystal polarization gra...
A transmission-type variable optical attenuator WOA) based on a polymer-stabilized dual-frequency li...
A variable optical attenuator (VOA) at λ=1.55 μm using a sheared polymer network liquid crystal (SPN...
A variable optical attenuator (VOA) based on polymer stabilized twisted nematic (PSTN) liquid crysta...
We demonstrated a submillisecond response time and low-voltage variable optical attenuator (VOA) usi...
We demonstrated a submillisecond response time and low-voltage variable optical attenuator (VOA) usi...
A compact, low-component-count, no-moving-parts variable optical attenuator (VOA) is demonstrated fo...
A compact, low-component-count, no-moving-parts variable optical attenuator (VOA) is demonstrated fo...
Fiber-Optic Variable Optical Attenuators (VOAs) are demonstrated using Liquid Crystals (LC) for broa...
Fiber-Optic Variable Optical Attenuators (VOAs) are demonstrated using Liquid Crystals (LC) for broa...
We demonstrate a variable optical attenuator (VOA) at lambda = 1.55 mum using a sheared polymer netw...
A polymer-dispersed liquid crystal (PDLC)-based variable optical attenuator (VOA) was demonstrated t...
A polymer-dispersed liquid crystal (PDLC)-based variable optical attenuator (VOA) was demonstrated t...
In this work, a combination of a multiplexer and a variable optical attenuator in the same device (V...
In this work, a combination of a multiplexer and a variable optical attenuator in the same device (V...
Abstract—We demonstrate a variable optical attenuator (VOA) based on liquid crystal polarization gra...
A transmission-type variable optical attenuator WOA) based on a polymer-stabilized dual-frequency li...
A variable optical attenuator (VOA) at λ=1.55 μm using a sheared polymer network liquid crystal (SPN...
A variable optical attenuator (VOA) based on polymer stabilized twisted nematic (PSTN) liquid crysta...
We demonstrated a submillisecond response time and low-voltage variable optical attenuator (VOA) usi...
We demonstrated a submillisecond response time and low-voltage variable optical attenuator (VOA) usi...
A compact, low-component-count, no-moving-parts variable optical attenuator (VOA) is demonstrated fo...
A compact, low-component-count, no-moving-parts variable optical attenuator (VOA) is demonstrated fo...
Fiber-Optic Variable Optical Attenuators (VOAs) are demonstrated using Liquid Crystals (LC) for broa...
Fiber-Optic Variable Optical Attenuators (VOAs) are demonstrated using Liquid Crystals (LC) for broa...
We demonstrate a variable optical attenuator (VOA) at lambda = 1.55 mum using a sheared polymer netw...
A polymer-dispersed liquid crystal (PDLC)-based variable optical attenuator (VOA) was demonstrated t...
A polymer-dispersed liquid crystal (PDLC)-based variable optical attenuator (VOA) was demonstrated t...
In this work, a combination of a multiplexer and a variable optical attenuator in the same device (V...
In this work, a combination of a multiplexer and a variable optical attenuator in the same device (V...
Abstract—We demonstrate a variable optical attenuator (VOA) based on liquid crystal polarization gra...