We demonstrate, by generating a THz electric field directly within the guiding structure, an active two-wire waveguide operating in the terahertz (THz) range of wavelengths. We compare the energy throughput of the active configuration with that of a radiatively coupled semi-large photoconductive antenna, in which the radiation is generated outside the waveguide, reporting a 60 times higher energy throughput for the same illumination power and applied voltage. This novel, active waveguide design allows to have efficient coupling of the THz radiation in a dispersion-less waveguide without the need of involved radiative coupling geometries
Wire waveguides have recently been shown to be valuable for transporting pulsed terahertz radiation....
Present-day photonic terahertz (100 GHz–10 THz) systems offer dynamic ranges beyond 100 dB and frequ...
Present-day photonic terahertz (100 GHz–10 THz) systems offer dynamic ranges beyond 100 dB and frequ...
We demonstrate, by generating a THz electric field directly within the guiding structure, an active ...
We demonstrate, by generating a THz electric field directly within the guiding structure, an active ...
We demonstrate, by generating a THz electric field directly within the guiding structure, an active ...
We demonstrate, by generating a THz electric field directly within the guiding structure, an active ...
Increasing coupling of terahertz radiation into a low dispersion, broadband two-wire waveguide is an...
We present experimental and theoretical evidence for low loss terahertz propagation along a two-wire...
In this study, we present the design, fabrication and experimental characterization of waveguide-int...
We report the coupling and guiding of broadband terahertz radiation using a two-cylinder waveguide c...
Wire waveguides have recently been shown to be valuable for transporting pulsed terahertz radiation....
Wire waveguides have recently been shown to be valuable for transporting pulsed terahertz radiation....
Wire waveguides have recently been shown to be valuable for transporting pulsed terahertz radiation....
Present-day photonic terahertz (100 GHz–10 THz) systems offer dynamic ranges beyond 100 dB and frequ...
Wire waveguides have recently been shown to be valuable for transporting pulsed terahertz radiation....
Present-day photonic terahertz (100 GHz–10 THz) systems offer dynamic ranges beyond 100 dB and frequ...
Present-day photonic terahertz (100 GHz–10 THz) systems offer dynamic ranges beyond 100 dB and frequ...
We demonstrate, by generating a THz electric field directly within the guiding structure, an active ...
We demonstrate, by generating a THz electric field directly within the guiding structure, an active ...
We demonstrate, by generating a THz electric field directly within the guiding structure, an active ...
We demonstrate, by generating a THz electric field directly within the guiding structure, an active ...
Increasing coupling of terahertz radiation into a low dispersion, broadband two-wire waveguide is an...
We present experimental and theoretical evidence for low loss terahertz propagation along a two-wire...
In this study, we present the design, fabrication and experimental characterization of waveguide-int...
We report the coupling and guiding of broadband terahertz radiation using a two-cylinder waveguide c...
Wire waveguides have recently been shown to be valuable for transporting pulsed terahertz radiation....
Wire waveguides have recently been shown to be valuable for transporting pulsed terahertz radiation....
Wire waveguides have recently been shown to be valuable for transporting pulsed terahertz radiation....
Present-day photonic terahertz (100 GHz–10 THz) systems offer dynamic ranges beyond 100 dB and frequ...
Wire waveguides have recently been shown to be valuable for transporting pulsed terahertz radiation....
Present-day photonic terahertz (100 GHz–10 THz) systems offer dynamic ranges beyond 100 dB and frequ...
Present-day photonic terahertz (100 GHz–10 THz) systems offer dynamic ranges beyond 100 dB and frequ...