Low emittance lattice for the storage ring of Turkish Light Source Facility TURKAY
Zafer Nergiz, Avni Aksoy

TL;DR
This paper proposes a low emittance magnetic lattice for the TURKAY synchrotron storage ring, aiming to achieve high-brilliance photon beams at 3 GeV by optimizing beam dynamics.
Contribution
It introduces a novel low emittance lattice design specifically tailored for the TURKAY facility, enhancing beam quality for third-generation synchrotron radiation.
Findings
The proposed lattice achieves low emittance suitable for high-brilliance photon production.
Beam dynamic properties of the lattice demonstrate stable operation at 3 GeV.
The design improves photon beam quality compared to previous configurations.
Abstract
Turkish Accelerator Center) project is aimed to build an accelerator center in Turkey. The first step of the project is to construct IR-FEL facility. The second stage is to build a synchrotron radiation facility named TURKAY, which is the third generation synchrotron radiation light source that aimed to achieve high brilliance photon beam from low emittance electron beam at 3 GeV. The electron beam parameters highly depend on the magnetic lattice of the storage ring. In this paper a low emittance storage ring for TURKAY is proposed and beam dynamic properties of the magnetic lattice are investigated.
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