Nanometer size field effect transistors can operate as efficient resonant or broadband terahertz detectors, mixers, phase shifters and frequency multipliers at frequencies far beyond their fundamental cut-of frequency. This work is an overview of some recent results concerning the low temperatures operation, linearity, and circular polarization studies of nanometer scale field effect transistors for the detection of terahertz radiation. Also first results on graphene transistors are discussed
The unique optoelectronic properties of graphene make it an ideal platform for a variety of photonic...
Nanometer size field effect transistors can operate as efficient resonant or broadband terahertz det...
Nanometer size field effect transistors can operate as efficient resonant or broadband terahertz det...
Nanometer size field effect transistors can operate as efficient resonant or broadband terahertz det...
Nanometer size field effect transistors can operate as efficient resonant or broadband terahertz det...
Nanometer size field effect transistors can operate as efficient resonant or broadband terahertz det...
Nanometer size field effect transistors can operate as efficient resonant or broadband terahertz det...
Nanometer size field effect transistors can operate as efficient resonant or broadband terahertz det...
International audienceInterest in terahertz (THz) systems and technology has grown significantly ove...
International audienceInterest in terahertz (THz) systems and technology has grown significantly ove...
Nanotransistors offer great prospect for the development of innovative THz detectors based on the no...
Nanotransistors offer great prospect for the development of innovative THz detectors based on the no...
Nanotransistors offer great prospect for the development of innovative THz detectors based on the no...
Detectors for quasi-optical and guide THz waves are key elements of any THz technology. In recent ye...
Nanometer size field effect transistors can operate as efficient resonant or broadband terahertz det...
The unique optoelectronic properties of graphene make it an ideal platform for a variety of photonic...
Nanometer size field effect transistors can operate as efficient resonant or broadband terahertz det...
Nanometer size field effect transistors can operate as efficient resonant or broadband terahertz det...
Nanometer size field effect transistors can operate as efficient resonant or broadband terahertz det...
Nanometer size field effect transistors can operate as efficient resonant or broadband terahertz det...
Nanometer size field effect transistors can operate as efficient resonant or broadband terahertz det...
Nanometer size field effect transistors can operate as efficient resonant or broadband terahertz det...
Nanometer size field effect transistors can operate as efficient resonant or broadband terahertz det...
International audienceInterest in terahertz (THz) systems and technology has grown significantly ove...
International audienceInterest in terahertz (THz) systems and technology has grown significantly ove...
Nanotransistors offer great prospect for the development of innovative THz detectors based on the no...
Nanotransistors offer great prospect for the development of innovative THz detectors based on the no...
Nanotransistors offer great prospect for the development of innovative THz detectors based on the no...
Detectors for quasi-optical and guide THz waves are key elements of any THz technology. In recent ye...
Nanometer size field effect transistors can operate as efficient resonant or broadband terahertz det...
The unique optoelectronic properties of graphene make it an ideal platform for a variety of photonic...
Nanometer size field effect transistors can operate as efficient resonant or broadband terahertz det...
Nanometer size field effect transistors can operate as efficient resonant or broadband terahertz det...