access icon free Active waveband selective switches based on guided-mode resonance for telecommunications

Active waveband selective switches for the telecommunication wavebands are fabricated and demonstrated. This type of active waveband selective switch is composed of a guided-mode resonance filter, a twisted nematic liquid crystal (TN-LC) layer, and a linear polariser. In voltage-off status, a fabricated active waveband selective switch with grating period of 893.86 nm exhibits high resonance peak with wavelength around 1311.2 nm. In voltage-on status, this switch exhibits a high resonance peak with wavelength around 1551.3 nm. The measured reflection peaks of another active waveband selective switch with grating period of 872.84 nm are located at 1309.1 and 1549.4 nm in voltage-on status and voltage-off status, respectively. Thus, light waveband can be tuned between O-band and C-band by electrically driving the TN-LC layer of this type of active waveband selective switch in real time.

Inspec keywords: nematic liquid crystals; diffraction gratings; optical filters; optical polarisers; optical switches

Other keywords: wavelength 1311.2 nm; wavelength 872.84 nm; wavelength 1549.4 nm; light waveband; wavelength 1551.3 nm; grating period; C-band; twisted nematic liquid crystal layer; TN-LC layer; resonance peak; wavelength 893.86 nm; telecommunication wavebands; active waveband selective switch; O-band; guided-mode resonance filter; voltage-off status; voltage-on status; wavelength 1309.1 nm; reflection peaks; linear polariser

Subjects: Optical switches; Multiplexing and switching in optical communication; Optical materials; Optical coatings and filters; Gratings, echelles; Optical switches; Liquid crystals (optical materials); Spatial filters, zone plates, and polarizers; Optical communication devices, equipment and systems

http://iet.metastore.ingenta.com/content/journals/10.1049/iet-opt.2018.5051
Loading

Related content

content/journals/10.1049/iet-opt.2018.5051
pub_keyword,iet_inspecKeyword,pub_concept
6
6
Loading