Optimizing centroiding using indexed table lookup: Application to crossed-strip readout

Author:

La An-Peng1ORCID,Zhang Wen-Wen1ORCID,Yang Yang23ORCID,Zheng Jin-Kun2,Bai Yong-Lin2ORCID,Song Yu-Chao1ORCID,Duan Jin-Yao24ORCID,Zhang Yanxin5,Wang Fang5,Zhao Hua5

Affiliation:

1. Xi’an University of Posts and Telecommunications 1 , Xi’an 710121, China

2. Key Laboratory of Ultra-fast Photoelectric Diagnostic Technology, Xi’an Institute of Optics and Precision Mechanics (XIOPM), Chinese Academy of Sciences 2 , Xi’an 710119, China

3. Collaborative Innovation Center of Extreme Optics, Shanxi University 3 , Taiyuan 030006, China

4. University of Chinese Academy of Sciences (CAS) 4 , Beijing 100049, China

5. Beijing Institute of Tracking and Telecommunication Technology 5 , Beijing 100049, China

Abstract

This paper introduces a hybrid readout system for a cross-strip position-sensitive anode detector that combines a lookup table and weighted averaging. The lookup table approach is used to identify event channels and select appropriate weights based on the corresponding index code for calculating the centroid of the electron cloud. This effectively enhances the readout system’s processing speed while preserving the high-resolution advantage of the cross-strip position-sensitive anode. Simulations were performed to evaluate the performance of the system. Experimental results demonstrate that this readout method achieves an event processing speed exceeding 10 MHz while maintaining a resolution of 17.96 lp/mm.

Funder

Scientific Instrument Developing Project, Chinese Academy of Sciences

West Light Foundation, Chinese Academy of Sciences

Key Research and Development Projects of Shaanxi Province

Publisher

AIP Publishing

Reference23 articles.

1. Design and performance of photon imaging detector based on cross-strip anode with charge induction;Appl. Sci.,2022

2. Time-resolved microspectrofluorometry and fluorescence lifetime imaging using ps pulsed diode lasers in laser scanning microscopes,2003

3. Linearly excited indium fluorescence imaging for temporally resolved high-precision flame thermometry;Opt. Lett.,2020

4. High resolution photon counting detection system for advanced inelastic X-ray scattering studies;IEEE Trans. Nucl. Sci.,2007

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