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Production of neutrons up to 18 MeV in high-intensity, short-pulse laser matter interactions

机译:在高强度,短脉冲激光物质相互作用中产生高达18 MeV的中子

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The generation of high-energy neutrons using laser-accelerated ions is demonstrated experimentally using the Titan laser with 360 J of laser energy in a 9 ps pulse. In this technique, a short-pulse, high-energy laser accelerates deuterons from a CD_2 foil. These are incident on a LiF foil and subsequently create high energy neutrons through the ~7Li(d,xn) nuclear reaction (Q = 15 MeV). Radiochromic film and a Thomson parabola ion-spectrometer were used to diagnose the laser accelerated deuterons and protons. Conversion efficiency into protons was 0.5, an order of magnitude greater than into deuterons. Maximum neutron energy was shown to be angularly dependent with up to 18 MeV neutrons observed in the forward direction using neutron time-of-flight spectrometry. Absolutely calibrated CR-39 detected spectrally integrated neutron fluence of up to 8 × 10~8 n sr~(-1) in the forward direction.
机译:使用具有360 J激光能量和9 ps脉冲的Titan激光器,通过实验证明了利用激光加速离子产生高能中子。在这种技术中,短脉冲高能激光加速了CD_2箔中的氘核。它们入射在LiF箔上,随后通过〜7Li(d,xn)核反应(Q = 15 MeV)产生高能中子。放射致变色膜和汤姆森抛物线离子光谱仪用于诊断激光加速氘和质子。转化为质子的效率为0.5,比转化为氘核的效率高一个数量级。使用中子飞行时间光谱法,在向前方向观察到的最大18 MeV中子显示出最大中子能量与角度相关。绝对校准的CR-39在向前方向检测到的光谱积分中子注量高达8×10〜8 n sr〜(-1)。

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