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《中国物理C》(英文)编辑部
2024年10月30日

Application of maximum likelihood method in reconstruction of charged particle tracks

  • By use of the maximum likelihood, a new method to fit space tracks with nonGaussian measurement errors is introduced. Compared with the conventional least squares fit, the resolution has been greatly improved and so does the reliability of distinguishing the false tracks.
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  • [1] Lars Bugge and Jan Myrheim,Nucl.Instr.and Meth.,179(1981)365[2]Particle Data Group,Phys.Rev,D45(1992)III.36.[3]T.Y.Chen and N.G.Yao,Nucl.Instr.and Meth.,A329(1993)479.[4]A.McManus et al.”Performance of a Silicon Microstrip Detector in a Very High Rate Enviroment,1991 Nuclar Science Symposium Proceedings.[5]T.Y.Chen and N.G.Yao,Nucl.Instr.and Meth.,A290(1990)390.
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Get Citation
Chen Tingyang. Application of maximum likelihood method in reconstruction of charged particle tracks[J]. Chinese Physics C, 1994, 18(4): 302-309.
Chen Tingyang. Application of maximum likelihood method in reconstruction of charged particle tracks[J]. Chinese Physics C, 1994, 18(4): 302-309. shu
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Received: 1900-01-01
Revised: 1900-01-01
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Application of maximum likelihood method in reconstruction of charged particle tracks

    Corresponding author: Chen Tingyang,
  • Department of Physics, Nanjing University, Naming 210008

Abstract: By use of the maximum likelihood, a new method to fit space tracks with nonGaussian measurement errors is introduced. Compared with the conventional least squares fit, the resolution has been greatly improved and so does the reliability of distinguishing the false tracks.

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