This paper reports on the first application of a liquid crystal infiltrated photonic bandgap fiber used as a tunable filter in an optical transmission system. The device allows low-cost amplified spontaneous emission (ASE) noise filtering and gain equalization with low insertion loss and broad tunability. System experiments show that the use of this filter increases for times the distance over which the optical signal-to-noise ratio (OSNR) is sufficient for error-free transmission with respect to the case in which no filtering is used
International audienceA 2D photonic crystal 3-ports filter with 6 dB bus insertion losses and drop e...
A new class of hybrid photonic crystal fibers infiltrated with liquid crystals offers novel function...
We demonstrate a highly tunable deep notch filter realized in a liquid-crystal photonic-bandgap (LCP...
This paper reports on the first application of a liquid crystal infiltrated photonic bandgap fiber u...
none7A tunable bandpass filter based on a Photonic Crystal Fiber filled with two different Liquid Cr...
A theoretical analysis of a fiber optical photonic band gap based tunable wavelength filter is prese...
A tunable bandpass filter based on a Photonic Crystal Fiber filled with two different Liquid Crystal...
A tunable bandpass filter based on a photonic crystal fiber filled with two different liquid crystal...
We infiltrate liquid crystals doped with BaTiO3 nanoparticles in a photonic crystal fiber and compar...
none6Liquid crystal photonic bandgap fibers represent a promising platform for the design of all-in-...
The application of a nematic liquid crystal infiltrated solid core Photonic Crystal Fiber as a novel...
Liquid crystal photonic bandgap fibers form a versatile and robust platform for designing optical fi...
2007-2008 > Academic research: refereed > Publication in refereed journalVersion of RecordPublishe
Liquid crystal photonic bandgap fibers form a versatile and robust platform for designing optical fi...
We demonstrate a simple, low-cost solution for a single multi-channel WDM (Wavelength Division Multi...
International audienceA 2D photonic crystal 3-ports filter with 6 dB bus insertion losses and drop e...
A new class of hybrid photonic crystal fibers infiltrated with liquid crystals offers novel function...
We demonstrate a highly tunable deep notch filter realized in a liquid-crystal photonic-bandgap (LCP...
This paper reports on the first application of a liquid crystal infiltrated photonic bandgap fiber u...
none7A tunable bandpass filter based on a Photonic Crystal Fiber filled with two different Liquid Cr...
A theoretical analysis of a fiber optical photonic band gap based tunable wavelength filter is prese...
A tunable bandpass filter based on a Photonic Crystal Fiber filled with two different Liquid Crystal...
A tunable bandpass filter based on a photonic crystal fiber filled with two different liquid crystal...
We infiltrate liquid crystals doped with BaTiO3 nanoparticles in a photonic crystal fiber and compar...
none6Liquid crystal photonic bandgap fibers represent a promising platform for the design of all-in-...
The application of a nematic liquid crystal infiltrated solid core Photonic Crystal Fiber as a novel...
Liquid crystal photonic bandgap fibers form a versatile and robust platform for designing optical fi...
2007-2008 > Academic research: refereed > Publication in refereed journalVersion of RecordPublishe
Liquid crystal photonic bandgap fibers form a versatile and robust platform for designing optical fi...
We demonstrate a simple, low-cost solution for a single multi-channel WDM (Wavelength Division Multi...
International audienceA 2D photonic crystal 3-ports filter with 6 dB bus insertion losses and drop e...
A new class of hybrid photonic crystal fibers infiltrated with liquid crystals offers novel function...
We demonstrate a highly tunable deep notch filter realized in a liquid-crystal photonic-bandgap (LCP...