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PFI:AIR-TT: Portable Neutron Detector Implementing PIN detectors and Application Specific Circuitry (ASIC)

PFI:AIR-TT: Portable Neutron Detector Implementing PIN detectors and Application Specific Circuitry (ASIC)
PFI:AIR-TT:便携式中子探测器实现 PIN 探测器和专用电路 (ASIC)
批准号:
1701192
负责人:
MANUEL QUEVEDO-lopez
金额:
$19.93万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2017
资助国家:
美国
项目状态:
已结题
起止时间:
2017-07-15 至 2018-12-31

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项目成果

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中文摘要
翻译
这个PFI:空气技术翻译项目专注于翻译基于硅p-i-n二极管和10B中子转换层的固态中子探测器的研究。低成本、高性能的便携式中子探测器将有从国土安全到医疗的广泛应用。第一反应人员将能够持续监测特殊核材料的存在,提供覆盖全国的分布式、联网的探测器阵列,使移动特殊核材料而不被检测到几乎是不可能的。医学物理学家将能够监测重离子癌症治疗期间中子的产生,以收集关于次级中子长期影响的数据。这项技术是基于对探测器的研究,该探测器显示出13%的本征热中子探测效率。目前,大多数便携式中子探测器都是基于3He填充的管。虽然这些探测器多年来一直是核工业的主力,但它们需要高电压,而且它们脆弱、笨重,而且价格太高,无法广泛分布。需要坚固耐用、低成本、低功耗、可联网的高效率中子探测器。这项PFI计划涉及德克萨斯大学达拉斯分校与德州仪器公司密切合作,开发电子设备,将许多小型固态中子探测器拼接成一个阵列,以大大降低成本,提供与商业上可获得的3He探测器类似的性能。这个项目解决了从研究发现到商业应用的几个技术差距(S)。例如,这项计划将把高效率的中子探测器元件与高性能的信号处理电子器件耦合在一起,这些电子元件由最先进的硅CMOS制成,基于ASIC(专用集成电路),它具有至少25个通道的前置放大和脉冲成形电路,每个1平方厘米的探测器元件有一个通道耦合。这将允许演示一个25平方厘米的固态中子探测器阵列,其性能与传统的3He探测器相当。模拟结果表明,高性能、低噪声的电子器件应能实现20%的本征热中子探测效率。由于所有电子设备都组合在一个ASIC中,因此电子设备的成本可以从每个通道使用谨慎组件的大约1200美元降低到整个阵列的10美元。由于成本大大降低,便携式中子探测器将得到前所未有的应用。该项目将支持两名研究生,他们将接受辐射探测器和核电子学领域的培训。这正在迅速成为一套失去的技能,需要了解辐射探测器和相关电子学的下一代工程师和科学家。学生们还将有机会与模拟和混合信号电子领域的领先者德州仪器的工程师和科学家合作。这是一个很少有学生有机会获得的机会。
英文摘要
This PFI: AIR Technology Translation project focuses on translating research on solid state neutron detectors based on silicon p-i-n diodes coupled with a 10B neutron conversion layer. Low cost, high performance portable neutron detectors will have applications ranging from homeland security to medical treatment. First responders will be able to continuously monitor for the presence of special nuclear materials, providing a distributed, networked array of detectors covering the entire country, making it nearly impossible to move special nuclear materials without being detected. Medical physicists will be able to monitor the production of neutrons during heavy ion cancer treatment to collect data on the long term impact of secondary neutrons. The technology is based on research that resulted in detectors that have shown 13% intrinsic thermal neutron detection efficiency. Currently, most portable neutron detectors are based on 3He-filled tubes. While these detectors have been the workhorse of the nuclear industry for many years, they require high voltage and they are fragile, bulky, and too expensive to be widely distributed. There is a need for high efficiency neutron detectors that are rugged, low cost, low power and that can be networked together. This PFI program involves the University of Texas at Dallas working closely with Texas Instruments to develop the electronics to tile many small solid state neutron detectors together into an array that will provide performance similar to commercially available 3He detectors at a greatly reduced cost. This project addresses several technology gap(s) as it translates from research discovery toward commercial application. For example, this program will couple highly efficient neutron detector elements with high performance signal processing electronics made from state-of-the-art silicon CMOS, based on an ASIC (application specific integrated circuit) that has at least 25 channels of pre-amplification and pulse shaping circuitry, with one channel coupled to each 1 cm2 detector element. This will allow the demonstration of a 25 cm2 solid state neutron detector array with performance equivalent to a conventional 3He detector. Simulations show that the high performance, low noise electronics should enable 20% intrinsic thermal neutron detection efficiency. Because all of the electronics are combined in one ASIC, the cost of the electronics can be reduced from approximately $1200 using discreet components for each channel, to $10 for the entire array. Because of the greatly reduced cost, portable neutron detectors would be available for applications never before possible. This project will support two graduate students who will be trained in the area of radiation detectors and nuclear electronics. This is quickly becoming a lost skill set and there is a need for the next generation of engineers and scientists that understand radiation detectors and the associated electronics. The students will also have the opportunity to work with engineers and scientists at Texas Instruments, the leader in the field of analog and mixed signal electronics. This is an opportunity to which few students have access.
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PFI-TT: Scalable solid state neutron and gamma detectors for diverse industrial applications
  • 批准号:
    2044675
  • 项目类别:
    Standard Grant
  • 资助金额:
    $24.94万
  • 财政年份:
    2021
  • 负责人:
    MANUEL QUEVEDO-lopez
  • 依托单位:
国内基金
海外基金
湍流和化学交互作用对H2-Air-H2O微混燃烧中NO生成的影响研究
  • 批准号:
    51976048
  • 项目类别:
    面上项目
  • 资助金额:
    61.0万元
  • 批准年份:
    2019
  • 负责人:
    邱朋华
  • 依托单位: