Glebov V Yu, Sangster T C, Stoeckl C, Knauer J P, Theobald W, Marshall K L, Shoup M J, Buczek T, Cruz M, Duffy T, Romanofsky M, Fox M, Pruyne A, Moran M J, Lerche R A, McNaney J, Kilkenny J D, Eckart M J, Schneider D, Munro D, Stoeffl W, Zacharias R, Haslam J J, Clancy T, Yeoman M, Warwas D, Horsfield C J, Bourgade J-L, Landoas O, Disdier L, Chandler G A, Leeper R J
Laboratory for Laser Energetics, University of Rochester, 250 East River Road, Rochester, New York 14623, USA.
Rev Sci Instrum. 2010 Oct;81(10):10D325. doi: 10.1063/1.3492351.
The National Ignition Facility (NIF) successfully completed its first inertial confinement fusion (ICF) campaign in 2009. A neutron time-of-flight (nTOF) system was part of the nuclear diagnostics used in this campaign. The nTOF technique has been used for decades on ICF facilities to infer the ion temperature of hot deuterium (D(2)) and deuterium-tritium (DT) plasmas based on the temporal Doppler broadening of the primary neutron peak. Once calibrated for absolute neutron sensitivity, the nTOF detectors can be used to measure the yield with high accuracy. The NIF nTOF system is designed to measure neutron yield and ion temperature over 11 orders of magnitude (from 10(8) to 10(19)), neutron bang time in DT implosions between 10(12) and 10(16), and to infer areal density for DT yields above 10(12). During the 2009 campaign, the three most sensitive neutron time-of-flight detectors were installed and used to measure the primary neutron yield and ion temperature from 25 high-convergence implosions using D(2) fuel. The OMEGA yield calibration of these detectors was successfully transferred to the NIF.
国家点火装置(NIF)于2009年成功完成了首次惯性约束聚变(ICF)实验。中子飞行时间(nTOF)系统是此次实验中所使用的核诊断设备的一部分。几十年来,nTOF技术一直被用于ICF设施,通过初级中子峰的时间多普勒展宽来推断热氘(D₂)和氘 - 氚(DT)等离子体的离子温度。一旦针对绝对中子灵敏度进行校准,nTOF探测器可用于高精度测量产额。NIF的nTOF系统旨在测量跨越11个数量级(从10⁸到10¹⁹)的中子产额和离子温度、DT内爆中10¹²到10¹⁶之间的中子爆炸时间,并推断产额高于10¹²的DT的面密度。在2009年的实验中,安装了三个最灵敏的中子飞行时间探测器,并用于测量使用D₂燃料的25次高收敛内爆的初级中子产额和离子温度。这些探测器的OMEGA产额校准成功转移到了NIF。