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A Novel Spectrometer for Measuring Laser-Produced Plasma X-Ray in Inertial Confinement Fusion

机译:用于测量惯性约束聚变中激光产生的等离子体X射线的新型光谱仪

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In the experimental investigations of inertial confinement fusion, the laser-produced high-temperature plasma contains very abundant information, such as the electron temperature and density, ionization. In order to diagnose laser-plasma distribution in space and evolution in time, an elliptical curved crystal spectrometer has been developed and applied to diagnose X-ray of laser-produced plasma in 0.2~2.46nm region. According to the theory of Bragg diffraction, four kinds of crystal including LiF, PET, MiCa, and KAP were chosen as dispersive elements. The distance of crystal lattice varies from 0.4 to 2.6 nm. Bragg angle is in the range of 30° ~67.5°, and the spectral detection angle is in 55.4° ~ 134°. The curved crystal spectrometer mainly consists of elliptical curved crystal analyzer, vacuum configuration, aligning device, spectral detectors and three-dimensional microadjustment devices. The spectrographic experiment was carried out on the XG-2 laser facility. Emission spectrum of Al plasmas, Ti plasma, and Au plasmas have been successfully recorded by using X-ray CCD camera. It is demonstrated experimentally that the measured wavelength is accorded with the theoretical value.
机译:在惯性约束聚变的实验研究中,激光产生的高温等离子体包含非常丰富的信息,例如电子温度和密度,电离。为了诊断激光等离子体在空间中的分布及其随时间的演变,研制了椭圆形弯曲晶体光谱仪并将其用于诊断激光产生的等离子体在0.2〜2.46nm范围内的X射线。根据布拉格衍射理论,选择了LiF,PET,MiCa和KAP四种晶体作为色散元素。晶格的距离在0.4至2.6nm之间变化。布拉格角在30°〜67.5°范围内,光谱检测角在55.4°〜134°之间。弯曲晶体光谱仪主要由椭圆形弯曲晶体分析仪,真空配置,对准装置,光谱检测器和三维微调整装置组成。光谱实验是在XG-2激光设备上进行的。使用X射线CCD相机已成功记录了Al等离子体,Ti等离子体和Au等离子体的发射光谱。实验证明,测得的波长与理论值相符。

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  • 来源
    《Science and technology of nuclear installation》 |2012年第2期|804217.1-804217.5|共5页
  • 作者单位

    Chongqing University of Technology, 69 Hongguang Avenue, Chongqing 400054, China College of Optoelectronic Engineering, Chongqing University, 174 Shazheng Avenue, Chongqing 400044, China;

    College of Optoelectronic Engineering, Chongqing University, 174 Shazheng Avenue, Chongqing 400044, China;

    College of Optoelectronic Engineering, Chongqing University, 174 Shazheng Avenue, Chongqing 400044, China;

    Chongqing University of Technology, 69 Hongguang Avenue, Chongqing 400054, China;

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