Holldack K, Schüßler-Langeheine C, Pontius N, Kachel T, Baumgärtel P, Windsor Y W, Zahn D, Goslawski P, Koopmans M, Ries M
Helmholtz-Zentrum Berlin für Materialien und Energie GmbH, Albert-Einstein-Str. 15, 12489, Berlin, Germany.
Fritz Haber Institute of the Max Planck Society, Faradayweg 4-6, 14195, Berlin, Germany.
Sci Rep. 2022 Sep 1;12(1):14876. doi: 10.1038/s41598-022-19100-z.
We report on a novel multi-color method of X-ray spectroscopy at a Synchrotron radiation source that uses two simultaneously filled electron orbits in an electron storage ring to generate multiple soft or tender X-ray beams of different wavelength. To establish the second orbit, we use nonlinear beam dynamics in the so called TRIBs-transverse resonance island buckets-mode of the BESSY II storage ring, where a second electron orbit winds around the regular one leading to transversely separated source points. X-ray beams of multiple colors are generated by imaging the individual source points via different pathways through a monochromator. The particular colors can be varied by changing the traversal electron beam positions through storage-ring parameters and/or via the monochromator dispersion. As a proof of principle, X-ray absorption spectroscopy is performed on thin Fe films in transmission as well as a scanning transmission measurement on a FeGeTe sample of inhomogeneous thickness normalizing resonant signals with the pre-edge intensity. Using the extraordinary pointing fidelity of successive X-ray macro-pulses arriving at MHz repetition rates, a detection of tiny contrasts in diluted systems, contrast enhancement in X-ray microscopy as well as fast dynamics studies come into reach.
我们报告了一种在同步辐射源处进行X射线光谱分析的新型多色方法,该方法利用电子储存环中两个同时填充的电子轨道来产生多个不同波长的软X射线或极软X射线束。为了建立第二个轨道,我们在BESSY II储存环的所谓TRIBs-横向共振岛桶模式中使用非线性束流动力学,其中第二个电子轨道围绕常规轨道缠绕,导致横向分离的源点。通过单色仪经由不同路径对各个源点进行成像,从而产生多种颜色的X射线束。通过改变储存环参数和/或经由单色仪色散来改变遍历电子束位置,可以改变特定的颜色。作为原理验证,对透射的薄铁膜进行了X射线吸收光谱分析,并对厚度不均匀的FeGeTe样品进行了扫描透射测量,用前缘强度对共振信号进行归一化。利用以MHz重复率到达的连续X射线宏脉冲的非凡指向保真度,可以实现对稀释系统中微小对比度的检测、X射线显微镜中的对比度增强以及快速动力学研究。