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RIS citation export for TUP05: Towards Laser Cooling of Relativistic ¹⁶O⁵⁺ Ion Beams at the CSRe

TY - UNPB
AU - Wang, H.B.
AU - Bussmann, M.H.
AU - Hai, B.
AU - Huang, Z.
AU - Li, J.
AU - Li, X.N.
AU - Ma, X.
AU - Mao, L.J.
AU - Mao, R.S.
AU - Wen, W.Q.
AU - Winters, D.F.A.
AU - Wu, J.X.
AU - Yang, J.C.
AU - Yuan, Y.J.
AU - Zhang, D.
AU - Zhao, D.
ED - Schaa, Volker RW
ED - Marx, Michaela
ED - Tilmont, Manuel
TI - Towards Laser Cooling of Relativistic ¹⁶O⁵⁺ Ion Beams at the CSRe
J2 - Proc. of COOL2017, Bonn, Germany, 18-22 September 2017
C1 - Bonn, Germany
T2 - Workshop on Beam Cooling and Related Topics
T3 - 11
LA - english
AB - Laser cooling is one of the most promising techniques to achieve high phase-space densities or even crystalline beams for relativistic heavy ion beams at storage rings [*]. In addition, precision laser spectroscopy of relevant transitions in highly charged ions can also be performed simultaneously during the laser cooling experiments [**]. In the storage ring CSRe at IMP, a new laser cooling experiment for Li-like ¹⁶O⁵⁺ ion beams is currently being prepared and will be carried out at the end of the year 2017 under the Laser-cooling Collaboration. During the experiment, a CW laser with a wavelength of 220 nm will be used to cool the ¹⁶O⁵⁺ ion beams with an energy of 280 MeV/u. The ¹⁶O⁵⁺ ion beams will be the highest charge state and highest energy ions ever used for laser cooling at the storage rings. In the experiment, the longitudinally dynamics of ultra-cold ion beams will be investigate systematically towards the transition of the space charge dominated regime. Precision laser spectroscopy of ¹⁶O⁵⁺ ions for measuring the transition energy of 2s1/2'2p1/2 and 2s1/2'2p3/2 is foreseen.
PB - JACoW
CP - Geneva, Switzerland
ER -