An experimental demonstration of a photonic time delay unit (PTDU) based on ferroelectric liquid crystal devices and Thompson polarization beamsplitters (TBS\u27s) is presented, High signal-to-noise ratios (SNR\u27s) ( \u3e 96 dB) and optical polarization extinction ratios (ER, similar to 40 dB) are demonstrated for the PTDU using an active noise filter technique. Using a 5 V peak square wave switch drive signal, a 70 mu s switching speed is demonstrated for this PTDU that can be used in fast (e.g., 5000 beam/s) beam scanning phased array systems, A shorter switching speed of 35 mu s is also observed using a high 15 V peak transitional voltage driving signal
A binary photonic delay line (PDL) module is proposed that gives balanced or equal gain/loss switche...
The use of polarization selective holograms as optical signal routing elements for the implementatio...
A 3-bit binary photonic delay line is demonstrated at 1 GHz using a directly modulated semiconductor...
An experimental demonstration of a photonic time delay unit (PTDU) based on ferroelectric liquid cry...
Reversible photonic time delay line (PTDL) architectures based on optical polarization switching 2-D...
A 7-bit multichannel photonic delay line for phased-array antenna control is demonstrated. Multichan...
Photonic time delay line (PTDL) architectures have been proposed for transmit/receive mode antenna a...
A 7-bit multichannel photonic delay line for phased-array antenna control is demonstrated. Multichan...
The first demonstration of a 4-bit binary photonic delay line using ferroelectric liquid crystal (FL...
The first demonstration of a 4-bit binary photonic delay line using ferroelectric liquid crystal (FL...
We introduce a novel, time delay-based, transmit-receive mode, remotely located, optical control sys...
A 3-bit binary photonic delay line is demonstrated at 1 GHz by use of a directly modulated semicondu...
For the first time, a modulated 2-b, one-channel binary switched, photonic time delay system (PTDS) ...
It is known that the high performance radars and communication systems require the use of phased arr...
A 3-bit binary photonic delay line is demonstrated at 1 Ghz using a directly modulated semiconductor...
A binary photonic delay line (PDL) module is proposed that gives balanced or equal gain/loss switche...
The use of polarization selective holograms as optical signal routing elements for the implementatio...
A 3-bit binary photonic delay line is demonstrated at 1 GHz using a directly modulated semiconductor...
An experimental demonstration of a photonic time delay unit (PTDU) based on ferroelectric liquid cry...
Reversible photonic time delay line (PTDL) architectures based on optical polarization switching 2-D...
A 7-bit multichannel photonic delay line for phased-array antenna control is demonstrated. Multichan...
Photonic time delay line (PTDL) architectures have been proposed for transmit/receive mode antenna a...
A 7-bit multichannel photonic delay line for phased-array antenna control is demonstrated. Multichan...
The first demonstration of a 4-bit binary photonic delay line using ferroelectric liquid crystal (FL...
The first demonstration of a 4-bit binary photonic delay line using ferroelectric liquid crystal (FL...
We introduce a novel, time delay-based, transmit-receive mode, remotely located, optical control sys...
A 3-bit binary photonic delay line is demonstrated at 1 GHz by use of a directly modulated semicondu...
For the first time, a modulated 2-b, one-channel binary switched, photonic time delay system (PTDS) ...
It is known that the high performance radars and communication systems require the use of phased arr...
A 3-bit binary photonic delay line is demonstrated at 1 Ghz using a directly modulated semiconductor...
A binary photonic delay line (PDL) module is proposed that gives balanced or equal gain/loss switche...
The use of polarization selective holograms as optical signal routing elements for the implementatio...
A 3-bit binary photonic delay line is demonstrated at 1 GHz using a directly modulated semiconductor...