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邦纳球谱仪对带电强子的响应。

The response of a bonner sphere spectrometer to charged hadrons.

作者信息

Agosteo S, Dimovasili E, Fassò A, Silari M

机构信息

Politecnico di Milano, CESNEF, Via Ponzio 34/3, 20133 Milano, Italy.

出版信息

Radiat Prot Dosimetry. 2004;110(1-4):161-8. doi: 10.1093/rpd/nch187.

Abstract

Bonner sphere spectrometers (BSSs) are employed in neutron spectrometry and dosimetry since many years. Recent developments have seen the addition to a conventional BSS of one or more detectors (moderator plus thermal neutron counter) specifically designed to improve the overall response of the spectrometer to neutrons above 10 MeV. These additional detectors employ a shell of material with a high mass number (such as lead) within the polyethylene moderator, in order to slow down high-energy neutrons via (n,xn) reactions. A BSS can be used to measure neutron spectra both outside accelerator shielding and from an unshielded target. Measurements were recently performed at CERN of the neutron yield and spectral fluence at various angles from unshielded, semi-thick copper, silver and lead targets, bombarded by a mixed proton/pion beam with 40 GeV per c momentum. These experiments have provided evidence that under certain circumstances, the use of lead-enriched moderators may present a problem: these detectors were found to have a significant response to the charged hadron component accompanying the neutrons emitted from the target. Conventional polyethylene moderators show a similar behaviour but less pronounced. These secondary hadrons interact with the moderator and generate neutrons, which are in turn detected by the counter. To investigate this effect and determine a correction factor to be applied to the unfolding procedure, a series of Monte Carlo simulations were performed with the FLUKA code. These simulations aimed at determining the response of the BSS to charged hadrons under the specific experimental situation. Following these results, a complete response matrix of the extended BSS to charged pions and protons was calculated with FLUKA. An experimental verification was carried out with a 120 GeV per c hadron beam at the CERF facility at CERN.

摘要

多年来,邦纳球谱仪(BSS)一直用于中子能谱测量和剂量测定。最近的发展是在传统BSS上增加了一个或多个专门设计的探测器(慢化剂加热中子计数器),以改善谱仪对能量高于10 MeV中子的整体响应。这些额外的探测器在聚乙烯慢化剂内使用一层高质量数的材料(如铅),以便通过(n,xn)反应使高能中子慢化。BSS可用于测量加速器屏蔽外以及未屏蔽靶的中子能谱。最近在欧洲核子研究中心(CERN)进行了测量,以获取用每c动量40 GeV的质子/π介子混合束轰击未屏蔽、半厚铜、银和铅靶时,不同角度下的中子产额和谱注量。这些实验证明,在某些情况下,使用富铅慢化剂可能会出现问题:发现这些探测器对靶发射中子所伴随的带电强子成分有显著响应。传统的聚乙烯慢化剂也有类似行为,但不太明显。这些次级强子与慢化剂相互作用并产生中子,这些中子进而被计数器探测到。为了研究这种效应并确定应用于解谱过程的校正因子,使用FLUKA代码进行了一系列蒙特卡罗模拟。这些模拟旨在确定在特定实验情况下BSS对带电强子的响应。根据这些结果,用FLUKA计算了扩展BSS对带电π介子和质子的完整响应矩阵。在CERN的CERF设施用每c 120 GeV的强子束进行了实验验证。

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