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DOE OSTI · 2248040

Proton and electron RLA optics design

Abstract

We describe optics designs of the key components of proton and electron Recirculating Linear Accelerators (RLAs). They are presented in the context of a high-power hadron accelerator being considered at ORNL and a CEBAF electron energy doubling study, FFA@CEBAF, being developed at Jefferson Lab. Both concepts rely on the Fixed-Field Alternating gradient (FFA) arc optics designs where multiple beam passes are transported by a single beam line. Some of the main challenges of the optics design are in synchronization and orbital and linear optics match of the individual passes with the linac straight. To minimize the complexity of the matching sections and make them more practical, it is preferable to complete as much of the orbital and optical match as possible within a single beam line using the FFA approach. The adiabatic matching technique proposed earlier is one such solution, but it requires a large number of cells. We present a much shorter matching section design based on another approach. A compact dog-leg-type section of several bending dipoles and quadrupoles is used to suppress the orbital offset and dispersion coming out of a periodic cell. Additional quadrupoles are used in the section to keep the beta functions under control and simplify their subsequent match to the linac. Initial beam tracking results are presented.

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BibTeXRIS

Benesch, J., Seryi, A., Coxe, A., Bodenstein, R., Bogacz, A., Deitrick, K., Gamage, B., Price, K., Khan, D., Berg, J., Brooks, S., Trbojevic, D., Morozov, V., Meot, F., Hoffstaetter, G.. 2023-09-01. Proton and electron RLA optics design. https://doi.org/10.18429/jacow-ipac2023-mopl180

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