Data acquisition electronics and reconstruction software for real time 3D track reconstruction within the MIMAC project
arXiv:1110.4348 · doi:10.1088/1748-0221/6/11/C11003
Abstract
Directional detection of non-baryonic Dark Matter requires 3D reconstruction of low energy nuclear recoils tracks. A gaseous micro-TPC matrix, filled with either 3He, CF4 or C4H10 has been developed within the MIMAC project. A dedicated acquisition electronics and a real time track reconstruction software have been developed to monitor a 512 channel prototype. This autotriggered electronic uses embedded processing to reduce the data transfer to its useful part only, i.e. decoded coordinates of hit tracks and corresponding energy measurements. An acquisition software with on-line monitoring and 3D track reconstruction is also presented.
Proceedings of TWEPP-11, Vienna, Austria, 26-30 September 2011
References in corpus (5)
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- Exclusion limits from data of directional Dark Matter detectors
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Cited by in corpus (5)
- Readout technologies for directional WIMP Dark Matter detection
- In situ measurement of the electron drift velocity for upcoming directional Dark Matter detectors
- Fast neutron spectroscopy from 1 MeV up to 15 MeV with Mimac-FastN, a mobile and directional fast neutron spectrometer
- Development and validation of a 64 channel front end ASIC for 3D directional detection for MIMAC
- Measurement of a 127 keV Neutron Field with a micro-TPC Spectrometer