We demonstrate a highly tunable deep notch filter realized in a liquid-crystal photonic-bandgap (LCPBG) fiber. The filter is realized without inducing a long-period grating in the fiber but simply by filling a solidcore photonic-crystal fiber with a liquid crystal and exploiting avoided crossings within the bandgap of the LCPBG fiber. The filter is demonstrated experimentally and investigated using numerical simulations. A high degree of tuning of the spectral position of the deep notch is also demonstrated
A ring-pattern liquid-filled photonic crystal fiber (R-LPCF) scheme, in which the first-ring holes (...
We investigate the tunability of splay-aligned liquid crystals for the use in solid core photonic cr...
A theoretical analysis of a fiber optical photonic band gap based tunable wavelength filter is prese...
We demonstrate a highly tunable deep notch filter realized in a liquid-crystal photonic-bandgap (LCP...
We demonstrate a highly tunable deep notch filter realized in a liquid-crystal photonic-bandgap (LCP...
We demonstrate a highly tunable deep notch filter realized in a liquid-crystal photonic-bandgap (LCP...
A new class of hybrid photonic crystal fibers infiltrated with liquid crystals offers novel function...
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...
A tunable bandpass filter based on a photonic crystal fiber filled with two different liquid crystal...
Liquid crystal photonic bandgap fibers represent a promising platform for the design of all-in-fiber...
We demonstrate a highly tunable photonic bandgap fiber, which has a large-core diameter of 25 μm and...
We demonstrate a highly tunable photonic bandgap fiber, which has a large-core diameter of 25 μm and...
Liquid crystal photonic bandgap fibers form a versatile and robust platform for designing optical fi...
Liquid crystal photonic bandgap fibers form a versatile and robust platform for designing optical fi...
A ring-pattern liquid-filled photonic crystal fiber (R-LPCF) scheme, in which the first-ring holes (...
We investigate the tunability of splay-aligned liquid crystals for the use in solid core photonic cr...
A theoretical analysis of a fiber optical photonic band gap based tunable wavelength filter is prese...
We demonstrate a highly tunable deep notch filter realized in a liquid-crystal photonic-bandgap (LCP...
We demonstrate a highly tunable deep notch filter realized in a liquid-crystal photonic-bandgap (LCP...
We demonstrate a highly tunable deep notch filter realized in a liquid-crystal photonic-bandgap (LCP...
A new class of hybrid photonic crystal fibers infiltrated with liquid crystals offers novel function...
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...
A tunable bandpass filter based on a photonic crystal fiber filled with two different liquid crystal...
Liquid crystal photonic bandgap fibers represent a promising platform for the design of all-in-fiber...
We demonstrate a highly tunable photonic bandgap fiber, which has a large-core diameter of 25 μm and...
We demonstrate a highly tunable photonic bandgap fiber, which has a large-core diameter of 25 μm and...
Liquid crystal photonic bandgap fibers form a versatile and robust platform for designing optical fi...
Liquid crystal photonic bandgap fibers form a versatile and robust platform for designing optical fi...
A ring-pattern liquid-filled photonic crystal fiber (R-LPCF) scheme, in which the first-ring holes (...
We investigate the tunability of splay-aligned liquid crystals for the use in solid core photonic cr...
A theoretical analysis of a fiber optical photonic band gap based tunable wavelength filter is prese...