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利用门控X射线探测器测量国家点火装置中低温黑腔的内爆对称性(特邀报告)

Measuring symmetry of implosions in cryogenic Hohlraums at the NIF using gated x-ray detectors (invited).

作者信息

Kyrala G A, Dixit S, Glenzer S, Kalantar D, Bradley D, Izumi N, Meezan N, Landen O L, Callahan D, Weber S V, Holder J P, Glenn S, Edwards M J, Bell P, Kimbrough J, Koch J, Prasad R, Suter L, Kline J L, Kilkenny J

机构信息

Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA.

出版信息

Rev Sci Instrum. 2010 Oct;81(10):10E316. doi: 10.1063/1.3481028.

Abstract

Ignition of imploding inertial confinement capsules requires, among other things, controlling the symmetry with high accuracy and fidelity. We have used gated x-ray imaging, with 10 μm and 70 ps resolution, to detect the x-ray emission from the imploded core of symmetry capsules at the National Ignition Facility. The measurements are used to characterize the time dependent symmetry and the x-ray bang time of the implosion from two orthogonal directions. These measurements were one of the primary diagnostics used to tune the parameters of the laser and Hohlraum to vary the symmetry and x-ray bang time of the implosion of cryogenically cooled ignition scale deuterium/helium filled plastic capsules. Here, we will report on the successful measurements performed with up to 1.2 MJ of laser energy in a fully integrated cryogenics gas-filled ignition-scale Hohlraum and capsule illuminated with 192 smoothed laser beams. We will describe the technique, the accuracy of the technique, and the results of the variation in symmetry with tuning parameters, and explain how that set was used to predictably tune the implosion symmetry as the laser energy, the laser cone wavelength separation, and the Hohlraum size were increased to ignition scales. We will also describe how to apply that technique to cryogenically layered tritium-hydrogen-deuterium capsules.

摘要

内爆式惯性约束靶丸的点火,除其他要求外,还需要高精度和高保真地控制对称性。我们使用了分辨率为10μm和70ps的门控x射线成像技术,来探测国家点火装置中对称靶丸内爆核心发出的x射线。这些测量用于从两个正交方向表征内爆随时间变化的对称性和x射线爆发时间。这些测量是用于调整激光和黑体辐射腔参数以改变低温冷却的点火规模的充氘/氦塑料靶丸内爆对称性和x射线爆发时间的主要诊断方法之一。在此,我们将报告在一个完全集成的低温充气点火规模黑体辐射腔和靶丸中,使用192束平滑激光束照射,激光能量高达1.2MJ时所进行的成功测量。我们将描述该技术、技术精度以及对称性随调谐参数的变化结果,并解释如何利用该数据集在激光能量、激光锥波长间隔和黑体辐射腔尺寸增加到点火规模时,可预测地调整内爆对称性。我们还将描述如何将该技术应用于低温分层的氚-氢-氘靶丸。

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