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Development of a 4#x03C0; directional fast neutron detector using tensioned metastable fluids

机译:利用张力亚稳态流体开发4π定向快速中子探测器

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The development of directional-position sensing neutron detector technologies has the potential to embody transformational impact on to the field of nuclear security and safeguards. Directional neutron detectors offer vastly superior background suppression enabling the detection of smaller quantities of special nuclear materials (SNM) at larger standoffs. Additionally, the ability to image the SNM neutron source directly would be particularly advantageous in active interrogation scenarios where one needs to discriminate interrogating neutrons from neutrons resulting from SNMs. A directional fast neutron detector utilizing the acoustic tensioned metastable fluid detector (ATMFD) system has been developed that is not only comparable in technical performance with competing directional fast neutron technologies but also offers a significant reduction in both cost and size while remaining completely insensitive to gamma photons and non-neutron cosmic background radiation. Past assessments by our group have shown that an ATMFD system (with a 6cm × 10cm cross-sectional area) would be capable of detecting a 8 kg Pu source at 25m standoff with a resolution of 11.2°, with 68% confidence within 60 s. While previous ATMFD system configurations were limited to determining angular resolution in 2π, a new ATMFD sensor system capable of ascertaining directionality in 4π fields is now presented. Characterization and validation of the AMTFD system in cylindrical and spherical geometries as developed includes Monte-Carlo based nuclear particle transport assessments using MCNP-PoliMi and multi-physics based assessments accounting for acoustic, structural, and electromagnetic coupling of the ATMFD system via COMSOL's multi-physics platform. A methodology based on geo-positioning-scheme (GPS) and a higher harmonic based scheme were successfully developed. The spherical (higher-harmonic) technology offers the tantalizing capability for rapid-fire (within - ens of seconds) the direct visualization based directionality of incoming neutron radiation via line-of-sight tracks - effectively comprising multiple single detectors within the envelope of a single spherical ATMFD.
机译:方向位置感测中子探测器技术的发展有可能体现对核安全和保障领域的变革性影响。定向中子探测器可提供极为出色的背景抑制,从而能够在较大的距离处探测到少量的特殊核材料(SNM)。另外,直接成像SNM中子源的能力在主动询问场景中特别有利,在主动询问场景中,需要将询问中子与SNM产生的中子区分开。已开发出利用声张亚稳流体探测器(ATMFD)系统的定向快速中子探测器,其技术性能不仅可与竞争性定向快速中子技术相媲美,而且可显着降低成本和尺寸,同时保持对伽玛完全不敏感光子和非中子宇宙背景辐射。我们小组过去的评估表明,ATMFD系统(具有6cm×10cm的横截面积)将能够在25m间距下以11.2°的分辨率检测到8 kg Pu源,在60 s内的置信度为68%。虽然以前的ATMFD系统配置仅限于确定2π的角分辨率,但现在提出了一种新型的ATMFD传感器系统,该系统能够确定4π场的方向性。所开发的圆柱形和球形几何形状的AMTFD系统的表征和验证包括使用MCNP-PoliMi进行的基于蒙特卡洛的核粒子迁移评估以及通过COMSOL的多物理场评估来考虑ATMFD系统的声学,结构和电磁耦合物理平台。成功开发了基于地理定位方案(GPS)的方法和基于高次谐波的方案。球形(高次谐波)技术提供了诱人的能力,可以快速发射(以秒为单位),并通过视线轨迹基于直接可视化的入射中子辐射的方向性进行可视化-有效地包括多个单个探测器,包括单球形ATMFD。

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