Track Recognition for the Telescopes with Silicon Strip Detectors
arXiv:2110.08261 · doi:10.1016/j.nima.2022.166461
Abstract
For the high granularity and high energy resolution, Silicon Strip Detector (SSD) is widely applied in assembling telescopes to measure the charged particles in heavy ion reactions. In this paper, we present a novel method to achieve track recognition in the SSD telescopes of the Compact Spectrometer for Heavy Ion Experiment (CSHINE). Each telescope consists of a single-sided silicon strip detector (SSSSD) and a double-sided silicon strip detector (DSSSD) backed by CsI(Tl) crystals. Detector calibration and track reconstruction are implemented. Special decoding algorithm is developed for the multi-track recognition procedure to deal with the multi-hit effect convoluted by charge sharing and the missing signals with certain probability. It is demonstrated that the track recognition efficiency of the method is approximately 90\% and 80\% for the DSSSD-CsI and SSSSD-DSSSD events, respectively.
24 pages, 10 figures, 4 tables, 2 pages appendix
References in corpus (4)
- CSHINE for studies of HBT correlation in Heavy Ion Reactions
- Non-linearity effects on the light-output calibration of light charged particles in CsI(Tl) scintillator crystals
- The Emission Order of Hydrogen Isotopes via Correlation Functions in 30 MeV/u Ar+Au Reactions
- Properties of the fast fission and the coincident emissions of light charged particles in Ar + Au reactions at 30 MeV/u
Cited by in corpus (6)
- Observing the Ping-pong Modality of Isospin Degree of Freedom in Cluster Emission from Heavy Ion Reactions
- Measurement of the high energy -rays from heavy ion reactions using Čerenkov detector
- The neutron array of the compact spectrometer for heavy ion experiments in Fermi energy region
- Precise Measurement of Short-Range Correlations in Nuclei from Bremsstrahlung Gamma Ray Emission in Low-Energy Heavy-Ion Collisions
- Revisit to the yield ratio of triton and He as an indicator of neutron-rich neck emission
- Experimental Study of Bremsstrahlung Gamma Ray Emission and Short-Range Correlations in Sn+Sn Collisions at 25 MeV/u