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Validation of the uncertainty budget for soft X-ray radiant power measurement using a cryogenic radiometer

机译:验证使用低温辐射计进行软X射线辐射功率测量的不确定性预算

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The cryogenic radiometer SYRES, a thermal detector based on the electrical substitution principle, has been used as the primary detector standard for radiant power measurement in the ultraviolet, vacuum ultraviolet and soft X-ray spectral ranges. In order to investigate the possibility of radiant energy being deposited in its absorber cavity without being transformed into heat when detecting soft X-rays, SYRES has been directly compared with the electron storage ring BESSY I, a primary radiometric source standard of calculable spectral radiant power. To this end, the integral radiant power emitted by the storage ring into a solid angle defined by a high-precision aperture was measured with SYRES. The experiments were conducted at two nominal energies of the circulating electrons, 800 MeV and 340 MeV, to study the influence of the different spectral distributions of the synchrotron radiation. For the original graphite-coated cavity absorber, significant discrepancies were found which could be traced back to the ablation of the graphite coating from the copper cavity body. In the case of the new gold-coated cavity absorber, the calculated and measured values of the radiant power agreed in all experiments within the combined relative uncertainties of typically 2.5×10~(-3) (κ=1).
机译:低温辐射计SYRES是一种基于电替代原理的热探测器,已经用作紫外线,真空紫外线和软X射线光谱范围内辐射功率测量的主要探测器标准。为了研究在检测软X射线时辐射能在不吸收热量的情况下沉积在吸收腔中的可能性,我们将SYRES与电子存储环BESSY I直接进行了比较,后者是可计算光谱辐射功率的主要辐射源标准。为此,用SYRES测量了由存储环发射到由高精度光圈定义的立体角中的积分辐射功率。实验是在循环电子的两个标称能量800 MeV和340 MeV上进行的,以研究同步加速器辐射的不同光谱分布的影响。对于最初的石墨涂层腔体吸收器,发现了明显的差异,可以追溯到从铜腔体中烧蚀掉石墨涂层。对于新的镀金腔体吸收器,在所有实验中,辐射功率的计算值和测量值在通常为2.5×10〜(-3)(κ= 1)的组合相对不确定度内一致。

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