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Hard x-ray spectral energy distributions from pulsed power generators measured by transmission crystal spectrometers

机译:透射晶体光谱仪测量的脉冲发电机的硬X射线光谱能量分布

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Summary form only given. Hard x-ray tungsten spectra from the NRL Gamble II generator were recorded by a transmission crystal spectrometer in the photon energy range > 10 keV. The crystal diffraction efficiencies were accurately calibrated,2 and this enables the accurate measurement of the absolutely-calibrated photon energy distribution from pulsed power generators. When measuring spectra in the 20 to 70 keV range, which is of interest for x-ray damage studies, the Gamble II experiments demonstrated the need to shield against higher energy photons up to the peak kilovoltage of the pulsed-power generator. In addition, a spectrometer optimized for measuring the x-ray fluence should be able to record the photon energy distribution from the entire area of a wide x-ray source on a single discharge. A new spectrometer has been designed that can record the absolutely-calibrated 20-70 keV photon energy distribution from a 12” diameter source such as produced by the Saturn generator. The spectra from the left and right sides of the source are spatially resolved on the detector, and a slot aperture provides spatial resolution in the perpendicular direction. The spectrometer can be deployed at standoff distances in the 2 to 4 meter range and can record the spatially resolved spectra from a single discharge on an image plate detector. The spectrometer has a linear geometry with a central axis, and the spectrometer is easily aligned using a laser propagating along the central axis and pointing to the center of the x-ray source. Spectrometers of this type have been custom designed for recording hard x-ray spectra at short-pulse laser facilities with shielding against MeV photons, and the same shielding techniques can be applied to recording spectra from energetic pulsed-power generators. Using an absolutely calibrated x-ray source at NIST, the individual spectrometer components such as crystal and filters can be calibrated to few percent accuracy. The sp- ctrometer's final end-to-end sensitivity calibration, which relates the detector signal to the source fluence, can be performed to better than 20% absolute accuracy. Such accurate measurement of the x-ray fluence from pulse-power generators will greatly improve the analysis and mitigation of x-ray irradiation damage.
机译:仅提供摘要表格。用透射晶体光谱仪记录了来自NRL Gamble II发生器的硬X射线钨光谱,其光子能量范围> 10 keV。晶体衍射效率得到了准确的校准2,这使得能够精确测量来自脉冲发生器的绝对校准的光子能量分布。当测量在20至70 keV范围内的光谱时(这是X射线损伤研究所关注的),Gamble II实验表明,需要屏蔽高达脉冲发电机峰值电压的更高能量的光子。另外,为测量X射线通量而优化的光谱仪应该能够在一次放电中记录来自宽X射线源整个区域的光子能量分布。设计了一种新的光谱仪,该光谱仪可以记录来自直径为12“的土星发生器产生的绝对校准的20-70 keV光子能量分布。来自光源左侧和右侧的光谱在检测器上进行空间分辨,狭缝孔径在垂直方向提供空间分辨率。该光谱仪可以在2至4米范围内的隔离距离处进行部署,并且可以在印版检测器上记录一次放电产生的空间分辨光谱。光谱仪具有带有中心轴的线性几何形状,并且使用沿中心轴传播并指向X射线源中心的激光可以轻松地将光谱仪对准。这种类型的光谱仪是经过定制设计的,用于在短脉冲激光设备上记录硬X射线光谱,并具有对MeV光子的屏蔽,并且相同的屏蔽技术也可以用于记录来自高能脉冲功率发生器的光谱。使用NIST上经过绝对校准的X射线源,可以将单个光谱仪组件(例如晶体和滤光片)校准到百分之几的精度。分光计的最终端到端灵敏度校准将检测器信号与源通量相关联,其绝对精度可以达到20%以上。脉冲功率发生器产生的X射线通量的这种精确测量将大大改善X射线辐射损伤的分析和缓解。

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