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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >MAC-TMFD: A novel, Multi-Armed Centrifugally Tensioned Metastable Fluid Detector (gamma-blind) - Neutron-alpha recoil-fission spectrometer
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MAC-TMFD: A novel, Multi-Armed Centrifugally Tensioned Metastable Fluid Detector (gamma-blind) - Neutron-alpha recoil-fission spectrometer

机译:MAC-TMFD:新型,多臂离心张紧的亚稳态流体探测器(伽玛盲)-中子-阿尔法后坐裂变光谱仪

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摘要

This paper describes the physics, design, and qualification of a novel, parallel-processing mode spectroscopy enabled sensor system architecture for the detection of fundamental nuclear particles interacting with fluids placed under tensioned metastable states. Our past studies have described gamma-blind spectroscopic detection of neutrons, alphas and fission events using the Centrifugally Tensioned Metastable Fluid Detectors (CTMFDs) allowing for high intrinsic efficiencies over 80% for neutron energies spanning 0.02eV to 15 MeV, and efficiencies of over 95% for detection of alpha and fission fragment recoils.As a novel advancement, the CTMFD was radically redesigned such that a single unit effectively works as several detectors operating in parallel - resulting in the Multi-Arm Centrifugally Tensioned Metastable Fluid Detectors (MAC-TMFDs). The MAC-TMFD now enables benefits such as several times faster data acquisition, and simultaneous, more rapid spectroscopic detection of neutrons-alphas-fission events within the same apparatus.As a first-of-kind prototype, the dual-arm, aka (2)MAC-TMFD effectively encompassing two TMFDs within one form factor has been designed, constructed and extensively tested for neutron-alpha detection. The MAC-TMFD was tested to show improvement over traditional liquid scintillation counters (LCSs) for alpha spectroscopy and exhibited similar to 10-to-100 times greater efficiency than a Beckman LS6500 (TM). spectrometer. Gamma-insensitivity was demonstrated using Co-60 and Cs-137 sources (offering gamma ray exposure doses of up to similar to 1 R/h (0.01 Sv/h) while showing high sensitivity for neutron detection [for hard Pu-Be(n,alpha), and fission(252)Cf fission derived neutron spectra; this is in addition to allow for energy profile difference identification. Analysis for neutron detection efficiency reveals that the detection efficiency varies non-linearly with the tension negative pressure (Pneg) ranging from 10% to over 50% of the theoretical interaction rates for the Pneg states tested. The resulting detection data has been shown to remain compatible with the underlying science and physics of a traditional TMFD system; however, with a 0.1 MPa reduced Pneg offset attributed to the tension state being maximized at the wall-fluid interface for the MAC-TMFD vs. in the bulk for the conventional CTMFD design. A follow-on (8)MAC-TMFD architecture (with 8 independent CTMFDs within a single enclosure) has also been constructed and proven promising in scoping studies. This paper presents the various steps involved in consideration of the underlying physics, technical challenges, design, construction, and benchmarking-vetting of the MAC-TMFD sensor architecture.
机译:本文描述了一种新颖的,具有并行处理模式光谱技术的传感器系统的物理结构,设计和鉴定,该传感器系统体系结构用于检测与处于张力亚稳态的流体相互作用的基本核粒子。我们过去的研究描述了使用离心张力亚稳流体检测器(CTMFD)进行中子,α和裂变事件的伽玛盲光谱检测,对于0.02eV至15 MeV的中子能量,其固有效率高达80%以上,效率超过95% CTMFD进行了彻底的重新设计,以使一个单元可以有效地用作几个并行运行的探测器-从而产生了多臂离心张力亚稳流体探测器(MAC-TMFD) 。现在,MAC-TMFD具有以下优势:数据采集速度提高数倍,同时在同一装置中对中子-α裂变事件进行光谱学检测,速度更快。作为首个原型,双臂双臂又名( 2)已经设计,构建并广泛测试了在一种外形尺寸内有效包含两个TMFD的MAC-TMFD,用于中子α探测。经过测试,MAC-TMFD表现出比传统的液体闪烁计数器(LCS)更好的alpha光谱分析,其效率比Beckman LS6500(TM)高出10到100倍。光谱仪。使用Co-60和Cs-137放射源证明了对伽玛射线的不敏感性(提供高达1 R / h(0.01 Sv / h)的伽玛射线照射剂量,同时对中子检测显示出高敏感性[对于硬Pu-Be(n ,α)和裂变(252)Cf裂变衍生的中子光谱;这是为了识别能量分布差异而进行的中子探测效率分析表明,探测效率随张力负压(Pneg)的变化呈非线性变化从测试的Pneg状态的理论相互作用率的10%到50%以上,已证明所得检测数据与传统TMFD系统的基础科学和物理学兼容;但是,归因于Pneg偏移降低了0.1 MPa与传统的CTMFD设计相比,MAC-TMFD的壁-液界面处的张力状态得到了最大化,而后续的(8)MAC-TMFD架构(在单个机柜中具有8个独立的CTMFD)具有还被构造并证明在范围研究中很有希望。本文介绍了考虑MAC-TMFD传感器体系结构的基本物理,技术挑战,设计,构造和基准审核所涉及的各个步骤。

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