Schroer Christian G, Agapov Ilya, Brefeld Werner, Brinkmann Reinhard, Chae Yong Chul, Chao Hung Chun, Eriksson Mikael, Keil Joachim, Nuel Gavaldà Xavier, Röhlsberger Ralf, Seeck Oliver H, Sprung Michael, Tischer Markus, Wanzenberg Rainer, Weckert Edgar
Deutsches Elektronen-Synchrotron (DESY), Notkestrasse 85, 22607 Hamburg, Germany.
MAX IV Laboratory, Lund University, PO Box 118, SE-221 00 Lund, Sweden.
J Synchrotron Radiat. 2018 Sep 1;25(Pt 5):1277-1290. doi: 10.1107/S1600577518008858. Epub 2018 Aug 9.
The PETRA IV project aims at upgrading the present synchrotron radiation source PETRA III at DESY into an ultralow-emittance source. Being diffraction limited up to X-rays of about 10 keV, PETRA IV will be ideal for three-dimensional X-ray microscopy of biological, chemical and physical processes under realistic conditions at length scales from atomic dimensions to millimetres and time scales down to the sub-nanosecond regime. In this way, it will enable groundbreaking studies in many fields of science and industry, such as health, energy, earth and environment, mobility and information technology. The science case is reviewed and the current state of the conceptual design is summarized, discussing a reference lattice, a hybrid multi-bend achromat with an interleaved sextupole configuration based on the ESRF-EBS design, in more detail as well as alternative lattice concepts.
PETRA IV项目旨在将德国电子同步加速器研究所(DESY)现有的同步辐射源PETRA III升级为超低发射度源。PETRA IV在高达约10 keV的X射线范围内受衍射限制,对于在从原子尺寸到毫米的长度尺度以及低至亚纳秒量级的时间尺度的实际条件下对生物、化学和物理过程进行三维X射线显微镜观察将是理想的。通过这种方式,它将能够在许多科学和工业领域开展开创性研究,如健康、能源、地球与环境、交通和信息技术。本文回顾了科学案例并总结了概念设计的当前状态,更详细地讨论了一种基于欧洲同步辐射装置 - 增强亮度模式(ESRF - EBS)设计的具有交错六极配置的混合多弯消色差器参考晶格以及替代晶格概念。