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RIS citation export for MO3AB1: Characterizing the Coupled Bunch Driving Terms in a Storage Ring

TY - CONF
AU - Harkay, K.C.
AU - Berenc, T.G.
AU - Byrd, J.M.
AU - Dowd, R.T.
AU - Emery, L.
AU - Teytelman, D.
AU - Wienands, U.
ED - Liu, Zhengzheng
ED - Lidia, Steven
ED - McCausey, Amy
ED - Schaa, Volker RW
TI - Characterizing the Coupled Bunch Driving Terms in a Storage Ring
J2 - Proc. of IBIC2017, Grand Rapids, MI, USA, 20-24 August 2017
C1 - Grand Rapids, MI, USA
T2 - International Beam Instrumentation Conference
T3 - 6
LA - english
AB - Stable operation of a modern high current storage rings requires attention to the sources of coupling impedance. Methods ranging from EM modeling to bench and beam measurements are routinely used to characterize accelerator components. The beam-based method presented here complements existing approaches, and allows precise measurements and identification of narrowband resonances in structures such as RF cavities or in-vacuum undulators. We combine the well-established approach of characterizing eigenvalues of coupled-bunch instabilities with modern high-throughput data acquisition tools and automatic analysis methods. By sequentially exciting low-amplitude oscillation of individual modes below the instability threshold and observing open-loop damping, we automatically map the eigenvalues of all even-fill eigenmodes. Repeating the measurements while changing operating conditions, such as cavity temperatures or undulator gaps, provides a detailed mapping of the impedance source. These measurements are used to extract impedance parameters as well as to optimize accelerator settings. Experimental results from the Advanced Photon Source and other accelerators illustrate the technique.
PB - JACoW
CP - Geneva, Switzerland
SP - 21
EP - 27
KW - ion
KW - impedance
KW - cavity
KW - HOM
KW - synchrotron
DA - 2018/03
PY - 2018
SN - 978-3-95450-192-2
DO - 10.18429/JACoW-IBIC2017-MO3AB1
UR - http://jacow.org/ibic2017/papers/mo3ab1.pdf
ER -