Performance Study of Compact Semiconductor Neutron Spectrometer HardPix for Lunar Water Mapping
- NázevTitle
- Performance Study of Compact Semiconductor Neutron Spectrometer HardPix for Lunar Water MappingPerformance Study of Compact Semiconductor Neutron Spectrometer HardPix for Lunar Water Mapping
- Druh výsledkuResult type
- Článek v časopiseJournal article
- AutořiAuthors
- R. Filgas, D. Matthiä, H. Cintas, T. Slavíček, J. Jelínek, S. Gohl, M. Malich, P. Ferreira Natal Da Luz, B. Bergmann
- DOIDOI
- 10.3390/s26165256
- Časopis / citaceJournal / citation
- Sensors 26(16), 5256 (2026) · ISSN 1424-8220
- RokYear
- 2026
- JazykLanguage
- eng
- ProjektProject
- Radiation Monitor System in a PackageRadiation Monitor System in a Package; Robotika a pokročilá průmyslová výrobaRobotics and advanced industrial production
- Citace ke staženíDownload citation
- TXT · BibTeX
AbstraktAbstract
The current interest in lunar exploration led by the Artemis program is pushing scientists to search for lunar water deposits directly on the surface of the Moon, using small robotic rovers. The Institute of Experimental and Applied Physics, Czech Technical University, Prague (IEAP CTU), is developing a miniature Timepix3-based detector called Neutron HardPix, which is capable of mapping water deposits using non-invasive detection of neutrons created underground by cosmic rays and thermalized by hydrogen. This neutron spectrometer measures count rate variations in thermal, epithermal and fast neutrons attributed to hydrogen abundance in the lunar subsurface, while monitoring cosmic radiation as a natural source of neutrons. Neutron HardPix is based on the miniature (<0.1 U, 130 g) radiation monitor HardPix, and has significant space heritage.
The current interest in lunar exploration led by the Artemis program is pushing scientists to search for lunar water deposits directly on the surface of the Moon, using small robotic rovers. The Institute of Experimental and Applied Physics, Czech Technical University, Prague (IEAP CTU), is developing a miniature Timepix3-based detector called Neutron HardPix, which is capable of mapping water deposits using non-invasive detection of neutrons created underground by cosmic rays and thermalized by hydrogen. This neutron spectrometer measures count rate variations in thermal, epithermal and fast neutrons attributed to hydrogen abundance in the lunar subsurface, while monitoring cosmic radiation as a natural source of neutrons. Neutron HardPix is based on the miniature (<0.1 U, 130 g) radiation monitor HardPix, and has significant space heritage.