In this paper, the performance of a digital optical switch, operating at the infrared communications wavelength of 1550 nm and based on the thermo-optic effect in amorphous silicon, are investigated. We prove that the strong thermo-optic effect of amorphous silicon, combined with the possibility of realising micrometric integrated structures, allow the design of promising integrated switches. The device, designed for low-cost photonic applications, could be easily integrated in silicon optoelectronic circuits
Hydrogenated amorphous silicon (a-Si:H) shows interesting optoelectronic and technological propertie...
Silicon photonics is a new emerging and disruptive technology aimed at using cost-effective silicon-...
A planar waveguide based on an amorphous silicon-amorphous silicon carbide heterostructure is propos...
In this paper, the performance of a digital optical switch, operating at the infrared communications...
In this paper, static and dynamic thermo-optical numerical analysis of a Digital Optical Switch ( DO...
In this work a waveguide-integrated 2 ×2 switch operating at the infrared communication wavelength ...
A new amorphous silicon waveguide is realized by use of amorphous silicon carbon as cladding materia...
Silicon photonics is a very promising technology for future low-cost high-bandwidth optical telecomm...
Silicon-on-insulator technology has been used to fabricate 2 x 2 thermo-optic switches. The switch s...
This paper describes the design, fabrication and characterisation of fast thermo-optical switches on...
Thermo-optical silicon-on-insulator (SOI) waveguide switch has been fabricated and characterized. Th...
Based on thermo-optical effect of silicon, a 2 x 2 switch is fabricated in silicon-on-insulator by c...
Hydrogenated amorphous silicon (a-Si:H) has been already considered for the objective of passive opt...
A novel (2*2) digital optical switch is reported involving thermo-optically induced adiabatic modal ...
By exploiting the small bend radius achievable using high-index-contrast silicon photonic wire waveg...
Hydrogenated amorphous silicon (a-Si:H) shows interesting optoelectronic and technological propertie...
Silicon photonics is a new emerging and disruptive technology aimed at using cost-effective silicon-...
A planar waveguide based on an amorphous silicon-amorphous silicon carbide heterostructure is propos...
In this paper, the performance of a digital optical switch, operating at the infrared communications...
In this paper, static and dynamic thermo-optical numerical analysis of a Digital Optical Switch ( DO...
In this work a waveguide-integrated 2 ×2 switch operating at the infrared communication wavelength ...
A new amorphous silicon waveguide is realized by use of amorphous silicon carbon as cladding materia...
Silicon photonics is a very promising technology for future low-cost high-bandwidth optical telecomm...
Silicon-on-insulator technology has been used to fabricate 2 x 2 thermo-optic switches. The switch s...
This paper describes the design, fabrication and characterisation of fast thermo-optical switches on...
Thermo-optical silicon-on-insulator (SOI) waveguide switch has been fabricated and characterized. Th...
Based on thermo-optical effect of silicon, a 2 x 2 switch is fabricated in silicon-on-insulator by c...
Hydrogenated amorphous silicon (a-Si:H) has been already considered for the objective of passive opt...
A novel (2*2) digital optical switch is reported involving thermo-optically induced adiabatic modal ...
By exploiting the small bend radius achievable using high-index-contrast silicon photonic wire waveg...
Hydrogenated amorphous silicon (a-Si:H) shows interesting optoelectronic and technological propertie...
Silicon photonics is a new emerging and disruptive technology aimed at using cost-effective silicon-...
A planar waveguide based on an amorphous silicon-amorphous silicon carbide heterostructure is propos...