Author:
Hwang J.-G.,Schiwietz G.,Abo-Bakr M.,Atkinson T.,Ries M.,Goslawski P.,Klemz G.,Müller R.,Schälicke A.,Jankowiak A.
Abstract
AbstractTemporally short X-ray pulses are an indispensable tool for the study of electron transitions close to the Fermi energy and structural changes in molecules undergoing chemical reactions which take place on a time-scale of hundreds of femtoseconds. The time resolution of experiments at 3rd generation light sources which produce intense synchrotron radiation is limited fundamentally by the electron-bunch length in the range of tens of picoseconds. Here we propose a new scheme for the generation of intense and coherent sub-femtoseconds soft X-ray pulses in storage rings by applying the Echo-Enabled Harmonic Generation (EEHG) method. Many issues for obtaining the EEHG structure such as two modulators and a radiator are solved by a paradigm shift in an achromatic storage ring cell. Numerical demonstration of the feasibility of the scheme for the BESSY II beam parameters is presented.
Publisher
Springer Science and Business Media LLC
Cited by
8 articles.
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