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  3. Design and commissioning of a THz time-domain spectro-goniometer in a cryogenic comet simulation chamber
 

Design and commissioning of a THz time-domain spectro-goniometer in a cryogenic comet simulation chamber

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BORIS DOI
10.48620/86381
Publisher DOI
10.1063/5.0252742
PubMed ID
40105461
Description
We present our newly developed laboratory setup, called COCoNuT (Characteristic Observation of Cometary Nuclei using THz-spectroscopy), consisting of a THz spectro-goniometer in a vacuum chamber along with a cryo-cooler intended for cooling down samples rich in ices expected in cometary environments. This setup allows the use of THz time domain spectroscopy on analogs including refractory materials in the spectral range from 0.1 to 5.5 THz with a spectral resolution of up to 0.005 THz. Since the optical setup is mounted on a precision controlled x/y-stage, imaging or spatial averaging can be performed. In this work, we present the design decisions and selection of components. Furthermore, the commissioning of the setup is described and the capabilities are shown. The system can reach pressures of 10−7 mbar and temperatures of 50 K. For 2D scanning, a spatial resolution of 0.3 line-pair per mm is obtained.
Date of Publication
2025-03-01
Publication Type
Article
Subject(s)
500 Science > 530 Physics
Keyword(s)
Control equipment
•
Goniometers
•
Vacuum apparatus
•
Planetary surfaces
•
Comets
•
Terahertz imaging
•
Terahertz spectroscopy
•
Terahertz time-domain spectroscopy
•
Ice
Language(s)
en
Contributor(s)
Stöckli, Linus Leoorcid-logo
Space Research and Planetology Physics - Remote Sensing
Physics Institute
Brändli, Mathias
Physics Institute, Space Research and Planetary Sciences
Space Research and Planetology Physics - Construction
Piazza, Daniele
Space Research and Planetology Physics - Construction
Physics Institute, Space Research and Planetary Sciences
Ottersberg, Rafael
NCCR PlanetS, PlanetS C5
NCCR PlanetS
Physics Institute, Space Research and Planetary Sciences
Pommerol, Antoine
Physics Institute, Space Research and Planetary Sciences
Space Research and Planetology Physics - Remote Sensing
Murk, Axelorcid-logo
Institute of Applied Physics, Microwaves
Institute of Applied Physics (IAP)
Thomas, Nicolas
Space Research and Planetology Physics - Remote Sensing
Physics Institute, Space Research and Planetary Sciences
Additional Credits
Physics Institute
Space Research and Planetology Physics - Construction
Physics Institute, Space Research and Planetary Sciences
NCCR PlanetS
Institute of Applied Physics (IAP)
Space Research and Planetology Physics - Remote Sensing
NCCR PlanetS, PlanetS C5
Institute of Applied Physics, Microwaves
Series
Review of Scientific Instruments
Publisher
American Institute of Physics
ISSN
1089-7623
0034-6748
Related Funding(s)
Staatssekretariat für Bildung, Forschung und Innovation (SBFI)
Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung (SNF)
Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung (SNF)
European Space Agency (ESA)
Access(Rights)
open.access
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