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首页> 外文期刊>Review of Scientific Instruments >Absolute charge calibration of scintillating screens for relativistic electron detection
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Absolute charge calibration of scintillating screens for relativistic electron detection

机译:相对论电子检测闪烁屏的绝对电荷校准

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摘要

We report on new charge calibrations and linearity tests with high-dynamic range for eight different scintillating screens typically used for the detection of relativistic electrons from laser-plasma based acceleration schemes. The absolute charge calibration was done with picosecond electron bunches at the ELBE linear accelerator in Dresden. The lower detection limit in our setup for the most sensitive scintillating screen (KODAK Biomax MS) was 10 fC/mm2. The screens showed a linear photon-to-charge dependency over several orders of magnitude. An onset of saturation effects starting around 10–100 pC/mm2 was found for some of the screens. Additionally, a constant light source was employed as a luminosity reference to simplify the transfer of a one-time absolute calibration to different experimental setups.
机译:我们报告了八种不同的闪烁屏幕的高动态范围的新电荷校准和线性测试,这些屏幕通常用于从基于激光等离子体的加速方案中检测相对论电子。绝对电荷校准是在德累斯顿的ELBE线性加速器上使用皮秒电子束进行的。在我们最敏感的闪烁屏幕(KODAK Biomax MS)中,我们的检测下限为10 fC / mm2。屏幕显示了几个数量级的线性光子对电荷的依赖性。在某些屏幕上,开始出现大约10–100 pC / mm2的饱和效应。此外,恒定光源被用作发光度参考,以简化一次性绝对校准到不同实验设置的转换。

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