Sub-millimetre wave or terahertz heterodyne receivers are key instruments for many space applications. For example, they are required for monitoring of the earth’s atmosphere or detection of molecules that might be tracers of life on other planets or moons. However, key components of these systems are currently supplied from outside Europe and performance as well as mass and power requirements often prohibit the implementation. The TeraComp project aims at developing European industrial level capability to design and manufacture terahertz front-end electronics based on high frequency Schottky diodes, Heterostructure Barrier Varactor (HBV) diodes and mHEMT MMICs for space and other applications. The prototype components will be integrated in...
International audienceThis article presents some aspects of the technology of terahertz heterodyne r...
International audienceThis article presents some aspects of the technology of terahertz heterodyne r...
THz or submillimetre-wave sensing covers the frequency range from 300 GHz to 10 THz (wavelengths fro...
Sub-millimetre wave or terahertz heterodyne receivers are key instruments for many space application...
Sub-millimetre wave or terahertz heterodyne receivers operating above 300 GHz are key instruments fo...
For future earth observation and planetary exploration missions (e.g. STEAMR, MetOp, GEOSOUNDER, SWI...
Heterodyne detection techniques play an important role in high-resolution spectroscopy in astronomy ...
Heterodyne detection techniques play an important role in high-resolution spectroscopy in astronomy ...
Heterodyne detection techniques play an important role in high-resolution spectroscopy in astronomy ...
Heterodyne detection techniques play an important role in high-resolution spectroscopy in astronomy ...
Abstract: Compact heterodyne receivers operating in the terahertz range are needed for earth observa...
Abstract: Compact heterodyne receivers operating in the terahertz range are needed for earth observa...
Radio Astronomy was always a frontrunner in the demand on terahertz technology. Millimetre and sub-m...
Radio Astronomy was always a frontrunner in the demand on terahertz technology. Millimetre and sub-m...
International audienceThis article presents some aspects of the technology of terahertz heterodyne r...
International audienceThis article presents some aspects of the technology of terahertz heterodyne r...
International audienceThis article presents some aspects of the technology of terahertz heterodyne r...
THz or submillimetre-wave sensing covers the frequency range from 300 GHz to 10 THz (wavelengths fro...
Sub-millimetre wave or terahertz heterodyne receivers are key instruments for many space application...
Sub-millimetre wave or terahertz heterodyne receivers operating above 300 GHz are key instruments fo...
For future earth observation and planetary exploration missions (e.g. STEAMR, MetOp, GEOSOUNDER, SWI...
Heterodyne detection techniques play an important role in high-resolution spectroscopy in astronomy ...
Heterodyne detection techniques play an important role in high-resolution spectroscopy in astronomy ...
Heterodyne detection techniques play an important role in high-resolution spectroscopy in astronomy ...
Heterodyne detection techniques play an important role in high-resolution spectroscopy in astronomy ...
Abstract: Compact heterodyne receivers operating in the terahertz range are needed for earth observa...
Abstract: Compact heterodyne receivers operating in the terahertz range are needed for earth observa...
Radio Astronomy was always a frontrunner in the demand on terahertz technology. Millimetre and sub-m...
Radio Astronomy was always a frontrunner in the demand on terahertz technology. Millimetre and sub-m...
International audienceThis article presents some aspects of the technology of terahertz heterodyne r...
International audienceThis article presents some aspects of the technology of terahertz heterodyne r...
International audienceThis article presents some aspects of the technology of terahertz heterodyne r...
THz or submillimetre-wave sensing covers the frequency range from 300 GHz to 10 THz (wavelengths fro...