The far-infrared (FIR) regime is one of the wavelength ranges where no astronomical data with sub-arcsecond spatial resolution exist. None of the medium-term satellite projects like SPICA, Millimetron, or the Origins Space Telescope will resolve this malady. For many research areas, however, information at high spatial and spectral resolution in the FIR, taken from atomic fine-structure lines, from highly excited carbon monoxide (CO), light hydrides, and especially from water lines would open the door for transformative science. A main theme will be to trace the role of water in proto-planetary discs, to observationally advance our understanding of the planet formation process and, intimately related to that, the pathways to habitable plane...
We present a study of different aspects of the multi-phase interstellar medium (ISM) of nearby galax...
We discuss the potential of high sensitivity mid-IR and far-IR spectroscopy to proof the physical pr...
We present stacked average far-infrared spectra of a sample of 197 dusty star-forming galaxies (DSFG...
The far-infrared (FIR) regime is one of the wavelength ranges where no astronomical data with sub-ar...
The far-infrared (FIR) regime is one of the wavelength ranges where no astronomical data with sub-ar...
White Paper submitted in responds to ESA Voyage 2050 callThe far-infrared (FIR) regime is one of the...
We are standing at the crossroads of powerful new facilities emerging in the next decade on the grou...
At a time when ALMA produces spectacular high resolution images of gas and dust in circumstellar dis...
Half of the energy ever emitted by stars and accreting objects comes to us in the far-infrared (FIR)...
A space-based far-infrared interferometer could work synergistically with the James Webb Space Teles...
High-resolution astronomical spectroscopy in the infrared from large groundbased telescopes will lea...
The mid- through far-infrared wavelength regime accounts for the second largest component of the sp...
While ALMA and JWST are revolutionizing our view of star and planet formation with their unprecedent...
We present a study of different aspects of the multi-phase interstellar medium (ISM) of nearby galax...
We discuss the potential of high sensitivity mid-IR and far-IR spectroscopy to proof the physical pr...
We present stacked average far-infrared spectra of a sample of 197 dusty star-forming galaxies (DSFG...
The far-infrared (FIR) regime is one of the wavelength ranges where no astronomical data with sub-ar...
The far-infrared (FIR) regime is one of the wavelength ranges where no astronomical data with sub-ar...
White Paper submitted in responds to ESA Voyage 2050 callThe far-infrared (FIR) regime is one of the...
We are standing at the crossroads of powerful new facilities emerging in the next decade on the grou...
At a time when ALMA produces spectacular high resolution images of gas and dust in circumstellar dis...
Half of the energy ever emitted by stars and accreting objects comes to us in the far-infrared (FIR)...
A space-based far-infrared interferometer could work synergistically with the James Webb Space Teles...
High-resolution astronomical spectroscopy in the infrared from large groundbased telescopes will lea...
The mid- through far-infrared wavelength regime accounts for the second largest component of the sp...
While ALMA and JWST are revolutionizing our view of star and planet formation with their unprecedent...
We present a study of different aspects of the multi-phase interstellar medium (ISM) of nearby galax...
We discuss the potential of high sensitivity mid-IR and far-IR spectroscopy to proof the physical pr...
We present stacked average far-infrared spectra of a sample of 197 dusty star-forming galaxies (DSFG...