Nonlinear dynamics with sextupoles in low-emittance light source storage rings

Author(s):  
Ryutaro Nagaoka ◽  
Katsuhisa Yoshida ◽  
Masahiro Hara
2021 ◽  
Vol 28 (4) ◽  
Author(s):  
Manuel Sanchez del Rio ◽  
Kenneth A. Goldberg ◽  
Valeriy V. Yashchuk ◽  
Ian Lacey ◽  
Howard A. Padmore

The diaboloid is a reflecting surface that converts a spherical wave to a cylindrical wave. This complex surface may find application in new Advanced Light Source bending-magnet beamlines or in other beamlines that now use toroidal optics for astigmatic focusing. Here, the numerical implementation of diaboloid mirrors is described, and the benefit of this mirror in beamlines exploiting diffraction-limited storage rings is studied by ray tracing. The use of diaboloids becomes especially interesting for the new low-emittance storage rings because the reduction of aberration becomes essential for such small sources. The validity of the toroidal and other mirror surfaces approximating the diaboloid, and the effect of the mirror magnification, are discussed.


Author(s):  
G. Le Bec ◽  
J. Chavanne ◽  
C. Benabderrahmane ◽  
L. Farvacque ◽  
L. Goirand ◽  
...  

2019 ◽  
Vol 3 (4) ◽  
Author(s):  
Kun Wang ◽  
Chang-Liang Li ◽  
Zheng-He Bai ◽  
Man-Zhou Zhang ◽  
Qing-Lei Zhang ◽  
...  

2014 ◽  
Vol 21 (5) ◽  
pp. 986-995 ◽  
Author(s):  
Jean Susini ◽  
Raymond Barrett ◽  
Joel Chavanne ◽  
Pablo Fajardo ◽  
Andy Götz ◽  
...  

Although beamline instrumentation is by nature driven by science, some recent examples serve as reminders that new technologies also enable new science. Indeed, exploiting the full scientific potential of forthcoming new storage rings with unprecedented source characteristics will, in many cases, require the development and implementation of novel instrumentation. In comparison with present synchrotron radiation facilities, the majority of beamlines should reap immediate performance benefits from the improved source emittance, principally through increased flux and/or horizontal beam size reduction at the sample. Instrumentation will have to develop along similar quantitative and qualitative trends. More speculative and more challenging is anticipating instrumentation that will be required by the new science made possible thanks to the unique coherence properties of diffraction-limited storage rings (DLSRs). ESRF has recently carried out a detailed feasibility study for a new ultra-low-emittance 6 GeV hybrid multibend storage ring, identified as ESRF Upgrade Programme Phase II. Although its performance is not expected to be equivalent to a DLSR source, the successful implementation of the ESRF Phase II project has to address scientific instrumentation issues that are also common to DLSRs. This article aims at providing a comprehensive review of some of the challenges encountered by the ESRF, in the context of the preparation of Phase II of its upgrade programme.


Author(s):  
Y. Cai ◽  
S. Ecklund ◽  
A. Fisher ◽  
S. Heifets ◽  
A. Novokhatski ◽  
...  

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