Efficient terahertz generation and detection are a key prerequisite for high performance terahertz systems. Major advancements in realizing efficient terahertz emitters and detectors were enabled through photonics-driven semiconductor devices, thanks to the extremely wide bandwidth available at optical frequencies. Through the efficient generation and ultrafast transport of charge carriers within a photo-absorbing semiconductor material, terahertz frequency components are created from the mixing products of the optical frequency components that drive the terahertz device – a process usually referred to as photomixing. The created terahertz frequency components, which are in the physical form of oscillating carrier concentrations, can feed a...
Optical pump terahertz probe spectroscopy (OPTP) is a versatile non-contact technique that measures ...
We present the ultrafast (THz-bandwidth) photoresponse from GaAs single-crystal mesoscopic structure...
When the surface of the semiconductor is illuminated by femtosecond laser pulse electromagnetic osci...
Efficient terahertz generation and detection are a key prerequisite for high performance terahertz s...
Photoconductive terahertz devices require ultrafast (< 1 ps) carrier dynamics to generate and det...
Photoconductive terahertz devices require ultrafast (< 1 ps) carrier dynamics to generate and det...
Understanding the ultrafast dynamics of photoexcited carriers in semiconductor nanostructures and th...
Ultrafast charge carrier dynamics in semiconductors are behind many operation characteristics of opt...
A method to reduce the transit time of majority of carriers in photomixers and photo detectors to $ ...
The pump-probe delay in optical pump, terahertz probe (OPTP) spectroscopy (time-resolved THz spectro...
Ultrafast charge carrier dynamics in serniconductoring materials ultimately determine the performanc...
Due to a previous lack of suitable sources and detectors, terahertz (1012 Hz) frequencies have prove...
Femtosecond pump-probe methods are useful tools for investigating transient electronic and vibration...
© 2018 SPIE. Optical pump-terahertz probe spectroscopy is a powerful contact-free technique for prob...
Scientific progress in the terahertz (0.1-10 THz) region of the electromagnetic spectrum has been im...
Optical pump terahertz probe spectroscopy (OPTP) is a versatile non-contact technique that measures ...
We present the ultrafast (THz-bandwidth) photoresponse from GaAs single-crystal mesoscopic structure...
When the surface of the semiconductor is illuminated by femtosecond laser pulse electromagnetic osci...
Efficient terahertz generation and detection are a key prerequisite for high performance terahertz s...
Photoconductive terahertz devices require ultrafast (< 1 ps) carrier dynamics to generate and det...
Photoconductive terahertz devices require ultrafast (< 1 ps) carrier dynamics to generate and det...
Understanding the ultrafast dynamics of photoexcited carriers in semiconductor nanostructures and th...
Ultrafast charge carrier dynamics in semiconductors are behind many operation characteristics of opt...
A method to reduce the transit time of majority of carriers in photomixers and photo detectors to $ ...
The pump-probe delay in optical pump, terahertz probe (OPTP) spectroscopy (time-resolved THz spectro...
Ultrafast charge carrier dynamics in serniconductoring materials ultimately determine the performanc...
Due to a previous lack of suitable sources and detectors, terahertz (1012 Hz) frequencies have prove...
Femtosecond pump-probe methods are useful tools for investigating transient electronic and vibration...
© 2018 SPIE. Optical pump-terahertz probe spectroscopy is a powerful contact-free technique for prob...
Scientific progress in the terahertz (0.1-10 THz) region of the electromagnetic spectrum has been im...
Optical pump terahertz probe spectroscopy (OPTP) is a versatile non-contact technique that measures ...
We present the ultrafast (THz-bandwidth) photoresponse from GaAs single-crystal mesoscopic structure...
When the surface of the semiconductor is illuminated by femtosecond laser pulse electromagnetic osci...