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TY - CONF AU - Porter, R.D. AU - Liepe, M. AU - Maniscalco, J.T. AU - Veshcherevich, V. ED - Schaa, Volker RW ED - Arduini, Gianluigi ED - Pranke, Juliana ED - Seidel, Mike ED - Lindroos, Mats TI - Sample Host Cavity Design for Measuring Flux Entry and Quench J2 - Proc. of IPAC2017, Copenhagen, Denmark, 14â19 May, 2017 C1 - Copenhagen, Denmark T2 - International Particle Accelerator Conference T3 - 8 LA - english AB - Current state-of-the-art Niobium superconducting radio-frequency (SRF) accelerator cavities have reached surface magnetic field close to the theoretical maximum set by the superheating field. Further increasing accelerating gradients will require new superconducting materials for accelerator cavities that can support higher surface magnetic fields. This necessitates measuring the quench fields of new materials in high power RF fields. In this paper, we present designs and simulations of a sample host cavity. The cavity design is optimized to maximize the surface magnetic field achieved on the sample. PB - JACoW CP - Geneva, Switzerland SP - 1149 EP - 1151 KW - cavity KW - niobium KW - SRF KW - dipole KW - klystron DA - 2017/05 PY - 2017 SN - 978-3-95450-182-3 DO - 10.18429/JACoW-IPAC2017-MOPVA126 UR - http://jacow.org/ipac2017/papers/mopva126.pdf ER -