Cecilia Angelica, Simon Rolf, Hamann Elias, Zuber Marcus, Faragó Tomáš, Haenschke Daniel, Hurst Mathias, van de Kamp Thomas, Bauer Sondes, Spiecker Rebecca, Czyzycki Mateusz, Gasilov Sergei, Ershov Alexey, Reszat Jan Thorsten, Baumbach Tilo
Institute for Photon Science and Synchrotron Radiation (IPS), Karlsruhe Institute of Technology (KIT), Hermann-von-Helmholtz-Platz 1, 76344 Eggenstein-Leopoldshafen, Germany.
Laboratory for Applications of Synchrotron Radiation (LAS), Karlsruhe Institute of Technology (KIT), Kaiserstraße 12, 76131 Karlsruhe, Germany.
J Synchrotron Radiat. 2025 Jul 1;32(Pt 4):1036-1051. doi: 10.1107/S1600577525003777. Epub 2025 Jun 2.
The superconducting wiggler beamline IMAGE at the KIT Light Source is dedicated to full-field hard X-ray imaging applications in materials and life sciences, with a focus on high-throughput computed tomography, laminography experiments and systematic in situ and operando studies. With two experimental hutches, IMAGE provides space for its dedicated permanent experimental stations UFO-II and LAMINO-II as well as for flexible custom setups. IMAGE allows parallel beam imaging experiments in monochromatic, pink or white beam mode, with spatial resolutions ranging from ∼1 µm to ∼30 µm and a large horizontal and vertical field of view of up to 44 mm × 8 mm, respectively. Photon energies between 8 keV and 40 keV are provided by a double-crystal or double-multilayer monochromator optics with energy resolutions of 0.01% and 1.5-2.7%, respectively. The filtered white beam mode provides high flux densities of up to 7.5 × 10 photons s mm at the sample position and energy spectra extending up to about 120 keV.
卡尔斯鲁厄理工学院光源处的超导摆动器光束线IMAGE专门用于材料科学和生命科学中的全场硬X射线成像应用,重点是高通量计算机断层扫描、层叠成像实验以及系统的原位和实时研究。IMAGE有两个实验小屋,为其专用的永久实验站UFO-II和LAMINO-II以及灵活的定制装置提供了空间。IMAGE允许在单色、粉红或白色光束模式下进行平行光束成像实验,空间分辨率范围从约1 µm到约30 µm,水平和垂直视场分别高达44 mm×8 mm。8 keV至40 keV的光子能量由双晶或双多层单色仪光学元件提供,能量分辨率分别为0.01%和1.5 - 2.7%。滤波后的白色光束模式在样品位置提供高达7.5×10光子 s mm的高通量密度,能谱延伸至约120 keV。