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Concepts for the PEP-X Light Source

TLDR
The PEP-X light source as mentioned in this paper is a very low-emittance storage ring with double bend achromat (DBA) cells in two of the six arcs that provide a total 30 straight sections for insertion device (ID) beam lines extending into two new experimental halls.
Abstract
SSRL and SLAC groups are developing a long-range plan to transfer its evolving scientific programs from the SPEAR3 light source to a much higher performing photon source that would be housed in the 2.2-km PEP-II tunnel. While various concepts for the PEP-X light source are under consideration, including ultimate storage ring and ERL configurations, the present baseline design is a very low-emittance storage ring. A hybrid lattice has double bend achromat (DBA) cells in two of the six arcs that provide a total 30 straight sections for insertion device (ID) beam lines extending into two new experimental halls. The remaining arcs contain TME cells. Using 90 m of damping wigglers the horizontal emittance at 4.5 GeV would be 100 pm-rad with 1.5-A stored beam. PEP-X will produce photon beams having brightnesses near 10{sup 22} (ph/s/mm{sup 2}/mrad{sup 2}/0.1% BW) at 10 keV. Studies indicate that a 90-m undulator could have FEL gain and brightness enhancement at soft x-ray wavelengths with the stored beam. Crab cavities or other beam manipulation systems could be used to reduce bunch length or otherwise enhance photon emission properties. The present status of the design of PEP-X as a storage ring is presented.

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Journal ArticleDOI

SASE FEL Storage Ring

TL;DR: In this paper, the authors explore the possibility of operating a self-amplified spontaneous emission free electron laser with a storage ring, and obtain the Renieri's limit for the stationary output power.
Journal ArticleDOI

SASE FEL Storage Ring

TL;DR: In this paper, the authors explore the possibility of operating a SASE FEL with a storage ring and obtain the Renieri's limit for the stationary output power and discuss the effect of the beam instabilities.

Reduction of beam emittance of pep-x using quadruple bend achromat cell *

TL;DR: In this article, the dispersion function in the non-dispersion straight is controlled to compromise with lower emittance and beam size at dispersion straight, and the QBA (Quadruple Bend Achromat) cell is used to replace the DBA.

Optimization of dynamic aperture of pep-x baseline design

TL;DR: In this paper, the effect of the nonlinearity of PEP-X on the dynamic aperture was analyzed using the program LEGO and the technique of frequency map was used to analyze the non-linear behavior.

Optimization of Dynamic Aperture of PEP-X Baseline Design

TL;DR: In this paper, the effect of the nonlinearity of PEP-X on the dynamic aperture was analyzed using the program LEGO and the technique of frequency map was used to analyze the non-linear behavior.
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