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A method for interpolating asymmetric peak shapes in multiplet γ-ray spectra

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【作者】 王思广冒亚军唐培家朱博梁羽铁

【Author】 WANG Si-Guang1;1) MAO Ya-Jun1 TANG Pei-Jia2 ZHU Bo1 LIANG Yu-Tie1 1 (School of Physics and State Key Laboratory of Nuclear Physics & Technology, Peking University, Beijing 100871, China) 2 (Department of Chemistry, China Institute of Atomic Energy, Beijing 102413, China)

【机构】 School of Physics and State Key Laboratory of Nuclear Physics & Technology,Peking UniversityDepartment of Chemistry,China Institute of Atomic Energy

【摘要】 The peak shapes of γ-rays at various energies must be known before unfolding the multiplet spectra obtained by using semiconductor or scintillation detectors. Traditional methods describe isolated peaks with multi-parameter fitting functions, and assume that most of these parameters do not vary with energy because it is rare to find a spectrum with enough isolated peaks to constrain their dependence. We present an algorithm for interpolating the γ-ray profile at any intermediate energy given a pair of isolated γ-ray peaks from the spectrum under consideration. The algorithm is tested on experimental data and leads to a good agreement between the interpolated profile and the fitting function. This method is more accurate than the traditional approach, since all aspects of the peak shape are allowed to vary with energy. New definitions of Left-Half Width at Half Maximum, and Right-Half Width at Half Maximum for peak shape description are introduced in this paper.

【Abstract】 The peak shapes of γ-rays at various energies must be known before unfolding the multiplet spectra obtained by using semiconductor or scintillation detectors. Traditional methods describe isolated peaks with multi-parameter fitting functions, and assume that most of these parameters do not vary with energy because it is rare to find a spectrum with enough isolated peaks to constrain their dependence. We present an algorithm for interpolating the γ-ray profile at any intermediate energy given a pair of isolated γ-ray peaks from the spectrum under consideration. The algorithm is tested on experimental data and leads to a good agreement between the interpolated profile and the fitting function. This method is more accurate than the traditional approach, since all aspects of the peak shape are allowed to vary with energy. New definitions of Left-Half Width at Half Maximum, and Right-Half Width at Half Maximum for peak shape description are introduced in this paper.

【基金】 National Natural Science Foundation of China (10775006);Research Fund for Doctoral Program of Higher Education of China (20070001008);China Postdoctoral Science Foundation
  • 【文献出处】 中国物理C ,Chinese Physics C , 编辑部邮箱 ,2009年05期
  • 【分类号】TP391.41
  • 【被引频次】2
  • 【下载频次】31
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