A MAM-fabricated 704.4 MHz CH cavity achieves 1.4-1.5 MeV/m CW and 4.6-4.8 MeV/m pulsed energy gain while keeping peak surface temperature near 60°C via novel internal cooling.
Eshraqi, Design and Optimization of ESS LINAC, in Proceedings of the International Particle Accelerator Conference 2011, San Sebastián, Spain, 4–9 September 2011
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Bridging Metal Additive Manufacturing and RF Accelerator Design: Development of a 704.4 MHz Crossbar H-Mode Linac for Efficient Beam Acceleration
A MAM-fabricated 704.4 MHz CH cavity achieves 1.4-1.5 MeV/m CW and 4.6-4.8 MeV/m pulsed energy gain while keeping peak surface temperature near 60°C via novel internal cooling.