Prince K C, Blyth R R, Delaunay R, Zitnik M, Krempasky J, Slezak J, Camilloni R, Avaldi L, Coreno M, Stefani G, Furlani C, De Simone M, Stranges S
Sincrotrone Trieste, I-34012 Trieste, Italy.
J Synchrotron Radiat. 1998 May 1;5(Pt 3):565-8. doi: 10.1107/S090904959800065X.
This paper reports the present stage of commissioning of the gas-phase photoemission beamline at Elettra, Trieste. The beamline is designed for atomic and molecular science experiments with high-resolution and high-flux synchrotron radiation. It consists of an undulator source, variable-angle spherical-grating monochromator and two experimental stations. The design value of the energy range is 20 to 800 eV with a specified resolving power of over 10000. The procedure adopted for calibration of this type of monochromator is discussed. At present a resolving power up to 20000 and a range up to 900 eV have been measured. Absorption spectra taken at the argon L(II,III)-edge and at the nitrogen, oxygen and neon K-edges are as sharp as, or sharper than, any reported in the literature. The instrumental broadening is well below the natural line-width making it difficult to quantify the resolution; this problem is discussed.
本文报道了位于的里雅斯特的Elettra同步加速器上气相光发射光束线的调试现阶段情况。该光束线专为利用高分辨率和高通量同步辐射进行原子和分子科学实验而设计。它由一个波荡器源、可变角度球面光栅单色仪和两个实验站组成。能量范围的设计值为20至800电子伏特,规定分辨率超过10000。讨论了这种类型单色仪的校准所采用的程序。目前已测得分辨率高达20000,范围高达900电子伏特。在氩L(II,III)边以及氮、氧和氖K边测得的吸收光谱与文献中报道的任何光谱一样尖锐,甚至更尖锐。仪器展宽远低于自然线宽,使得难以量化分辨率;对此问题进行了讨论。