Heterodyne spectroscopy of molecular rotational lines and atomic fine-structure lines is a powerful tool in astronomy and planetary research. One example is the OI fine-structure line at 4.7 THz. This is a main target to be observed with GREAT, the German Receiver for Astronomy at Terahertz Frequencies, which will be operated on board of SOFIA. We report on the development of a compact, easy-to-use source, which combines a quantum-cascade laser (QCL) a compact, lowinput- power Stirling cooler. This work is part of the local oscillator development for GREAT/SOFIA. The QCL, which is based on a two-miniband design, has been developed for high output and low electrical pump power. Efficient carrier injection is achieved by resonant longitudinal...
We report on a compact terahertz (THz) source based on a quantum-cascade laser (QCL). The source is...
High-resolution spectroscopy at super-terahertz frequencies (2-6 THz) can play a vital role in astro...
The terahertz (THz) portion of the elctromagnetic spectrum bears an amazing scientific potential in ...
We report on the development of a compact local oscillator (LO) for operation on board of SOFIA, nam...
Heterodyne spectroscopy of molecular rotational lines and atomic fine-structure lines is a powerful ...
Heterodyne spectroscopy of molecular rotational lines and atomic fine-structure lines is a powerful ...
Abstract— We report on the development of a 4.7-THz local oscillator (LO) for the heterodyne spectro...
Abstract — We report on the development of a compact local oscillator (LO) for operation on board of...
The Terahertz (THz) spectral range has a unique potential for many applications. One example is high...
The Terahertz (THz) spectral range has a unique potential for many applications. One example is high...
Heterodyne spectroscopy of molecular rotational lines and atomic fine-structure lines is a powerful ...
Quantum cascade lasers (QCLs) operating at 2.5 THz have been used for gas phase spectroscopy and as ...
Terahertz (THz) quantum cascade lasers (QCLs) are high-quality THz sources in terms of power (>1W) a...
We have developed terahertz (THz) quantum-cascade lasers (QCLs) based on GaAs/AlAs heterostructures ...
High-resolution spectroscopy at super-terahertz frequencies (2-6 THz) can play a vital role in astro...
We report on a compact terahertz (THz) source based on a quantum-cascade laser (QCL). The source is...
High-resolution spectroscopy at super-terahertz frequencies (2-6 THz) can play a vital role in astro...
The terahertz (THz) portion of the elctromagnetic spectrum bears an amazing scientific potential in ...
We report on the development of a compact local oscillator (LO) for operation on board of SOFIA, nam...
Heterodyne spectroscopy of molecular rotational lines and atomic fine-structure lines is a powerful ...
Heterodyne spectroscopy of molecular rotational lines and atomic fine-structure lines is a powerful ...
Abstract— We report on the development of a 4.7-THz local oscillator (LO) for the heterodyne spectro...
Abstract — We report on the development of a compact local oscillator (LO) for operation on board of...
The Terahertz (THz) spectral range has a unique potential for many applications. One example is high...
The Terahertz (THz) spectral range has a unique potential for many applications. One example is high...
Heterodyne spectroscopy of molecular rotational lines and atomic fine-structure lines is a powerful ...
Quantum cascade lasers (QCLs) operating at 2.5 THz have been used for gas phase spectroscopy and as ...
Terahertz (THz) quantum cascade lasers (QCLs) are high-quality THz sources in terms of power (>1W) a...
We have developed terahertz (THz) quantum-cascade lasers (QCLs) based on GaAs/AlAs heterostructures ...
High-resolution spectroscopy at super-terahertz frequencies (2-6 THz) can play a vital role in astro...
We report on a compact terahertz (THz) source based on a quantum-cascade laser (QCL). The source is...
High-resolution spectroscopy at super-terahertz frequencies (2-6 THz) can play a vital role in astro...
The terahertz (THz) portion of the elctromagnetic spectrum bears an amazing scientific potential in ...