Accelerator-based X-ray sources: Synchrotron radiation, X-ray free electron lasers and beyond

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Abstract

The evolution of synchrotron radiation (SR) sources and related sciences is discussed to explain the 'generation' of the SR sources. Most of the contemporary SR sources belong to the third generation, where the storage rings are optimized for the use of undulator radiation. The undulator development allowed to reduction of the electron energy of the storage ring necessary for delivering 10 keV X-rays from the initial 6-8 GeV to the current 3Gev. Now is the transitional period from the doublebend- Achromat lattice-based storage ring to the multi-bend-achromat lattice to achieve much smaller electron beam emittance. Free electron lasers are the other important accelerator-based light sources which recently reached hard X-ray regime by using self-amplified spontaneous emission scheme. Future accelerator-based X-ray sources should be continuous wave X-ray free electron lasers and pulsed X-ray free electron lasers. Some pathways to reach the future case are discussed. This article is part of the theme issue 'Fifty years of synchrotron science: Achievements and opportunities'.

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Ishikawa, T. (2019, June 17). Accelerator-based X-ray sources: Synchrotron radiation, X-ray free electron lasers and beyond. Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences. Royal Society Publishing. https://doi.org/10.1098/rsta.2018.0231

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