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Energy flow in a hadronic cascade: Application to hadron calorimetry

机译:强子级联中的能量流:在强子量热法中的应用

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摘要

The hadronic cascade description developed in an earlier paper is extended to the response of an idealized fine-sampling hadron calorimeter. Calorimeter response is largely determined by the transfer of energy $E_e$ from the hadronic to the electromagnetic sector via $\pi^0$ production. Fluctuations in this quantity produce the "constant term" in hadron calorimeter resolution. The increase of its fractional mean, $f_{\rm em}^0 = \vev{E_e}/E$, with increasing incident energy $E$ causes the energy dependence of the $\pi/e$ ratio in a noncompensating calorimeter. The mean hadronic energy fraction, $f_h^0 = 1-f_{\rm em}^0$, was shown to scale very nearly as a power law in $E$: $f_h^0 = (E/E_0)^{m-1}$, where $E_0\approx1$~GeV for pions, and $m\approx0.83$. It follows that $\pi/e=1-(1-h/e)(E/E_0)^{m-1}$, where electromagnetic and hadronic energy deposits are detected with efficiencies $e$ and $h$, respectively. Fluctuations in these quantities, along with sampling fluctuations, are incorporated to give an overall understanding of resolution, which is different from the usual treatments in interesting ways. The conceptual framework is also extended to the response to jets and the difference between $\pi$ and $p$ response.
机译:在较早的论文中开发的强子级联描述扩展到了理想化的精细采样强子量热仪的响应。量热计的响应主要取决于通过生产$π^ 0 $将能量$ E_e $从强子传递到电磁部分。数量的波动会产生强子量热仪分辨率的“常数项”。其分数平均值$ f _ {\ rm em} ^ 0 = \ vev {E_e} / E $的增加,随入射能量$ E $的增加,在无补偿量热仪中导致$ \ pi / e $比的能量依赖性。平均强子能量分数$ f_h ^ 0 = 1-f _ {\ rm em} ^ 0 $被显示成与幂律在$ E $中几乎成比例:$ f_h ^ 0 =(E / E_0)^ { m-1} $,其中$ E_0 \ approx1 $〜GeV用于介子,而$ m \ approx0.83 $。由此得出$ \ pi / e = 1-(1-h / e)(E / E_0)^ {m-1} $,其中检测到电磁能和强子能沉积的效率分别为$ e $和$ h $ 。这些量的波动以及采样的波动被合并在一起,以提供对分辨率的整体理解,这与通常的处理方法有所不同。概念框架还扩展到对喷气机的响应以及$ \ pi $和$ p $响应之间的差异。

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    Groom, D E;

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  • 年度 2006
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  • 原文格式 PDF
  • 正文语种 eng
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