首页> 外文学位 >Investigation of gamma-ray time shifts caused by capsule areal density variations in inertial confinement fusion experiments at the national ignition facility and the omega facility.
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Investigation of gamma-ray time shifts caused by capsule areal density variations in inertial confinement fusion experiments at the national ignition facility and the omega facility.

机译:在国家点火设施和欧米茄设施进行的惯性约束聚变实验中,对由胶囊面密度变化引起的伽马射线时移进行了研究。

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摘要

This thesis describes work on Cherenkov based gamma detectors used as diag- nostics at Inertial Confinement Fusion (ICF) facilities. The first part describes the calibration and commissioning of the Gamma Reaction History diagnostic which is a four cell Cherenkov detector array used to characterize the ICF implosion at the National Ignition Facility (NIF) by measuring the gamma rays generated during the fusion event. Two of the key metrics which the GRH measures are Gamma Bang Time (GBT) generated from the D(T,&agr;)n thermonuclear burn and Ablator Peak Time (APT) caused by (n,n&feet;)gamma reactions in the surrounding capsule ablator. Simulations of ignition capsules predict that GBT and APT should be time synchronized. After GRH commissioning, the array was used during first year of NIF operation in the National Ignition Campaign. Contrary to expectations, time shifts between GBT and APT of order 10s of picoseconds were observed.;In order to further investigate the possibility of these time shifts in view of testing both instrument and code credibility an ICF shot campaign at the smaller OMEGA facility in Rochester was devised. It was performed during two full shot days in April of 2013 and 2014 and confirmed in principle the viability of the Cherenkov detector approach but raised additional questions regarding the credibility of the simulation codes used to describe ICF experiments. Specifically the measurements show that the understanding of temporal behavior of GBT vs APT may not be properly modeled in the DRACO code used at OMEGA. In view of the OMEGA results which showed no time shifts between GBT and APT, the readout and timing synchronization system of the GRH setup at the NIF was reevaluated in the framework of this thesis. Motivated by the results, which highlighted the use of wrong optical fiber diameters and possible problems with the installed variable optical attenuators, the NIF equipment has been updated over the recent months and new timing tests will be performed during the next years.
机译:本文介绍了基于Cherenkov的伽马探测器在惯性约束融合(ICF)设施上进行诊断的工作。第一部分描述了伽马反应历史诊断程序的校准和调试,该诊断程序是一个四单元切伦科夫探测器阵列,用于通过测量聚变事件期间产生的伽马射线来表征国家点火设施(NIF)的ICF内爆。 GRH衡量的两个关键指标是D(T,a)n热核灼伤产生的伽马爆炸时间(GBT)和由周围胶囊中的(n,n&feet;)γ反应引起的消融峰时间(APT)烧蚀剂。点火胶囊的模拟预测GBT和APT应该是时间同步的。 GRH调试后,该阵列在国家点火运动的NIF运行的第一年中使用。与预期相反,观察到GBT和APT之间的时间转换为10皮秒左右;为了进一步测试这些时间转换的可能性,同时测试了仪器和代码的可靠性,在较小的OMEGA位于罗切斯特的OMEGA工厂中进行了ICF射击运动被设计。它是在2013年4月和2014年4月的两个全景镜头中进行的,原则上确认了Cherenkov检测器方法的可行性,但对用于描述ICF实验的仿真代码的可信度提出了其他疑问。具体而言,这些测量表明,可能无法在OMEGA上使用的DRACO代码中正确地建模对GBT与APT的时间行为的理解。鉴于OMEGA结果显示GBT和APT之间没有时间偏移,因此在本文的框架内重新评估了NIF处GRH设置的读出和定时同步系统。受结果的鼓舞,该结果强调了错误的光纤直径的使用以及已安装的可变光衰减器可能存在的问题,近几个月对NIF设备进行了更新,并将在未来几年中进行新的时序测试。

著录项

  • 作者

    Grafil, Elliot M.;

  • 作者单位

    Colorado School of Mines.;

  • 授予单位 Colorado School of Mines.;
  • 学科 Plasma physics.;Energy.;Nuclear physics and radiation.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 217 p.
  • 总页数 217
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:52:02

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