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Comparison Between Theoretical Predictions and LEGRI Background Noise Experimental Measurements

机译:理论预测与LEGRI背景噪声实验测量值的比较

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摘要

Trapped protons are responsible for the main component of LEGRIbackground. Detailed theoretical model has demonstrated that theproton-induced counting rate is two orders of magnitude larger thanthe counting rate of the diffuse gamma-ray flux. The continuous passesof LEGRI through the SAA (7 times everyday) makes very difficult thebackground modelling. Long and short lived isotopes contribute in verydifferent time scales to the proton-induced background component.The goal of this paper is to present a comparison between the long-livedbackground noise theoretical predictions and the experimental data. Theresults show an unexpected good agreement between the predicted and theobserved counting rates.
机译:受困的质子是LEGRIbackground的主要成分。详细的理论模型表明,质子诱导的计数率比扩散伽马射线通量的计数率大两个数量级。 LEGRI连续通过SAA(每天7次)使背景建模非常困难。长寿命同位素和短寿命同位素在质子诱导的本底成分中的贡献时间差别很大。本文的目的是对长寿命本底噪声理论预测和实验数据进行比较。结果表明,预测计数率与观察计数率之间出乎意料的良好一致性。

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  • 来源
    《Astrophysics and Space Science》 |2001年第1期|273-279|共7页
  • 作者单位

    GACE Instituto de Ciencias de los Materiales Universidad de Valencia;

    GACE Instituto de Ciencias de los Materiales Universidad de Valencia;

    Instituto de Física Corpuscular (CSIC-UV);

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