A medium-resolution Fourier-transform spectrometer for ground-based observation of astronomical sources at near-millimeter and submillimeter wavelengths is described. The steps involved in measuring and calibrating astronomical spectra are elaborated. The spectrometer is well suited to planetary spectroscopy, and initial measurements of the intrinsic brightness temperature spectra of Uranus and Neptune at wavelengths of 1.0 to 1.5 mm are presented
The development of high spectral resolution and highly sensitive long infrared wavelength instrument...
Precise relative measurements of the disk brightness temperatures of Venus, Mars, Jupiter, and Satur...
The application of Fourier Transform Spectroscopy (FTS) to planetary research is reviewed. The surve...
A medium-resolution Fourier-transform spectrometer for ground-based observation of astronomical sour...
At high, dry observatory sites, the transmission of the atmosphere at near-millimeter and submillime...
A new Fourier transform spectrometer, built for use at the Caltech Submillimeter Observatory, has b...
Microwave spectroscopy of solar system objects was supported. It necessarily involves millimeter and...
We present new photometric measurements of Uranus and Neptune between 0.35 and 2.0 mm. Together with...
The brightness temperatures of Jupiter, Saturn, Uranus, and Neptune in the range 35 to 1000 micron. ...
The planets and their satellites were observed at high resolution at millimeter wavelengths with the...
One of the legacies of the now retired Caltech Submillimeter Observatory (CSO) is presented in this ...
We present accurately calibrated submillimeter atmospheric transmission spectra obtained with a Four...
Careful observations were made at 86.1 GHz to derive the absolute brightness temperatures of the Sun...
The quest for extrasolar planets and their characterisation as well as studies of fundamental physic...
De nouveaux progrès ont été réalisés dans la production de spectres planétaires par spectroscopie de...
The development of high spectral resolution and highly sensitive long infrared wavelength instrument...
Precise relative measurements of the disk brightness temperatures of Venus, Mars, Jupiter, and Satur...
The application of Fourier Transform Spectroscopy (FTS) to planetary research is reviewed. The surve...
A medium-resolution Fourier-transform spectrometer for ground-based observation of astronomical sour...
At high, dry observatory sites, the transmission of the atmosphere at near-millimeter and submillime...
A new Fourier transform spectrometer, built for use at the Caltech Submillimeter Observatory, has b...
Microwave spectroscopy of solar system objects was supported. It necessarily involves millimeter and...
We present new photometric measurements of Uranus and Neptune between 0.35 and 2.0 mm. Together with...
The brightness temperatures of Jupiter, Saturn, Uranus, and Neptune in the range 35 to 1000 micron. ...
The planets and their satellites were observed at high resolution at millimeter wavelengths with the...
One of the legacies of the now retired Caltech Submillimeter Observatory (CSO) is presented in this ...
We present accurately calibrated submillimeter atmospheric transmission spectra obtained with a Four...
Careful observations were made at 86.1 GHz to derive the absolute brightness temperatures of the Sun...
The quest for extrasolar planets and their characterisation as well as studies of fundamental physic...
De nouveaux progrès ont été réalisés dans la production de spectres planétaires par spectroscopie de...
The development of high spectral resolution and highly sensitive long infrared wavelength instrument...
Precise relative measurements of the disk brightness temperatures of Venus, Mars, Jupiter, and Satur...
The application of Fourier Transform Spectroscopy (FTS) to planetary research is reviewed. The surve...