We present an electrically controlled photonic bandgap fiber device obtained by infiltrating the air holes of a photonic crystal fiber (PCF) with a dual-frequency liquid crystal (LC) with pre-tilted molecules. Compared to previously demonstrated devices of this kind, the main new feature of this one is its continuous tunability due to the fact that the used LC does not exhibit reverse tilt domain defects and threshold effects. Furthermore, the dual-frequency features of the LC enables electrical control of the spectral position of the bandgaps towards both shorter and longer wavelengths in the same device. We investigate the dynamics of this device and demonstrate a birefringence controller based on this principle
Abstract: Photonic crystal fibers (PCFs) have attracted significant attention during the last years ...
We propose a memorable and electrically tunable photonic device by infiltrating a dual-mode chiral-d...
A tunable bandpass filter based on a Photonic Crystal Fiber filled with two different Liquid Crystal...
We present an electrically controlled photonic bandgap fiber device obtained by infiltrating the air...
We present an electrically controlled photonic bandgap fiber device obtained by infiltrating the air...
We present an electrically tunable liquid crystal photonic bandgap fiber device based on a dual freq...
Liquid crystal photonic bandgap fibers represent a promising platform for the design of all-in-fiber...
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...
Tunable light switch using a photonic crystal fiber filled with nematic liquid crystal is demonstrat...
Photonic Crystal Fibers (PCFs) are characterized by the pattern arrangement of micrometer-size air-h...
A tunable bandpass filter based on a Photonic Crystal Fiber filled with two different Liquid Crystal...
We investigate the tunability of splay-aligned liquid crystals for the use in solid core photonic cr...
This doctoral thesis focuses on the theoretical study and analysis of novel types of photonic crysta...
Photonic crystal fibers (PCFs) have attracted significant attention during the last years and much r...
Abstract: Photonic crystal fibers (PCFs) have attracted significant attention during the last years ...
We propose a memorable and electrically tunable photonic device by infiltrating a dual-mode chiral-d...
A tunable bandpass filter based on a Photonic Crystal Fiber filled with two different Liquid Crystal...
We present an electrically controlled photonic bandgap fiber device obtained by infiltrating the air...
We present an electrically controlled photonic bandgap fiber device obtained by infiltrating the air...
We present an electrically tunable liquid crystal photonic bandgap fiber device based on a dual freq...
Liquid crystal photonic bandgap fibers represent a promising platform for the design of all-in-fiber...
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...
Tunable light switch using a photonic crystal fiber filled with nematic liquid crystal is demonstrat...
Photonic Crystal Fibers (PCFs) are characterized by the pattern arrangement of micrometer-size air-h...
A tunable bandpass filter based on a Photonic Crystal Fiber filled with two different Liquid Crystal...
We investigate the tunability of splay-aligned liquid crystals for the use in solid core photonic cr...
This doctoral thesis focuses on the theoretical study and analysis of novel types of photonic crysta...
Photonic crystal fibers (PCFs) have attracted significant attention during the last years and much r...
Abstract: Photonic crystal fibers (PCFs) have attracted significant attention during the last years ...
We propose a memorable and electrically tunable photonic device by infiltrating a dual-mode chiral-d...
A tunable bandpass filter based on a Photonic Crystal Fiber filled with two different Liquid Crystal...