arXiv · 1804.01985
Particle identification using digital pulse shape discrimination in a nTD silicon detector with a 1 GHz sampling digitizer
Abstract
In beam test experiments have been carried out for particle identification using digital pulse shape analysis in a 500~$\mu$m thick Neutron Transmutation Doped (nTD) silicon detector with an indigenously developed FPGA based 12 bit resolution, 1 GHz sampling digitizer. The nTD Si detector was used in a low-field injection setup to detect light heavy-ions produced in reactions of $\sim$ 5 MeV/A $^{7}$Li and $^{12}$C beams on different targets. Pulse height, rise time and current maximum have been obtained from the digitized charge output of a high bandwidth charge and current sensitive pre-amplifier. Good isotopic separation have been achieved using only the digitized charge output in case of light heavy-ions. The setup can be used for charged particle spectroscopy in nuclear reactions involving light heavy-ions around the Coulomb barrier energies.
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K. Mahata, A. Shrivastava, J. A. Gore, S. K. Pandit, V. V. Parkar, K. Ramachandran, A. Kumar, S. Gupta, P. Patale. 2018-04-05. Particle identification using digital pulse shape discrimination in a nTD silicon detector with a 1 GHz sampling digitizer. https://doi.org/10.1016/j.nima.2018.03.052
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