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Z, ZX, and X-1: a realistic path to high fusion yield

机译:Z,ZX和X-1:实现高融合产量的现实途径

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Z-pinches now constitute the most energetic and powerful sources of X-rays available by a large margin. The Z accelerator at Sandia National Laboratories has produced 1.8 MJ of X-ray energy, 280 TW of power, and hohlraum temperatures of 200 eV. These advances are being applied to inertial confinement fusion (ICF) experiments on Z. The requirements for high fusion yield are exemplified in the target to be driven by the X-1 accelerator. X-1 will drive two Z-pinches, each producing 7 MJ of X-ray energy and about 1000 TW of X-ray power. Together, these radiation sources will heat a hohlraum containing the 4-mm diameter ICF capsule to a temperature exceeding 225 eV for about 10 ns, with the pulse shape required to drive the capsule to high fusion yield; in the range of 200-1000 MJ. Since X-1 consists of two identical accelerators, it is possible to mitigate the technical risk of high yield by constructing one accelerator. This accelerator, ZX, will bridge the gap from Z to X-1 by driving an integrated target experiment with a very efficient energy source. ZX will also provide experimental confirmation that the full specifications of the X-1 accelerator for high yield are achievable, and that a realistic path to high fusion yield exists.
机译:现在,Z夹可构成大部分X射线中最有活力和功能最强大的源。桑迪亚国家实验室(Sandia National Laboratories)的Z加速器产生了1.8 MJ的X射线能量,280 TW的功率以及200 eV的白炽温度。这些进展已应用于Z惯性约束融合(ICF)实验。X-1加速器驱动的目标中,对高融合产量的要求得到了例证。 X-1将驱动两个Z夹点,每个夹点会产生7 MJ的X射线能量和大约1000 TW的X射线能量。这些辐射源一起将直径为4毫米的ICF胶囊的球形加热至超过225 eV的温度约10 ns,并需要脉冲形状来驱动胶囊达到高熔合率。在200-1000 MJ范围内。由于X-1由两个相同的促进剂组成,因此可以通过构建一个促进剂来减轻高产的技术风险。这种加速器ZX通过使用非常高效的能源驱动集成目标实验,将弥合Z到X-1之间的差距。 ZX还将提供实验证明,可以实现X-1促进剂的完整规格以实现高收率,并且存在实现高融合收率的现实途径。

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