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Ion temperature measurement of indirectly-driven implosions using a geometry-compensated neutron time-of-flight detector

机译:使用几何补偿的中子飞行时间探测器测量间接驱动的内爆的离子温度

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A geometry-compensated neutron time-of-flight detector has been constructed and used on Nova to measure ion temperatures from indirectly-driven implosions with yields between 2.5 and 5 (times) 10(sup 9) DD neutrons. The detector, which has an estimated response time of 250 ps, was located 150 cm from the targets. Due to the long decay time of the scintillator, the time-of-flight signal must be unfolded from the measured detector signal. Several methods for determining the width of the neutron energy spectrum from the data have been developed and give similar results. Scattered x rays continue to be a problem for low yield shots, but should be brought under control with adequate shielding. (ERA citation 19:031907)

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