25–30 Aug 2024
Hilton Chicago
America/Chicago timezone

Standing wave Dielectric Disk Accelerating structure design and cold test results

MOPB009
26 Aug 2024, 16:00
2h
Boulevard (Hilton Chicago)

Boulevard

Hilton Chicago

720 South Michigan Ave Chicago, IL 60605 USA
Poster Presentation MC2.6 Other electron accelerators Monday Poster Session

Speaker

John Power (Argonne National Laboratory)

Description

A Dielectric Disk Accelerator (DDA) is a metallic accelerating structure loaded with dielectric disks to increase coupling between cells, thus high group velocity, while still maintaining a high shunt impedance. This is crucial for achieving high efficiency high gradient acceleration in the short rf pulse acceleration regime. Research of these structures has produced traveling wave structures that are powered by very short (~9 ns), very high power (400 MW) RF pulses using two beam acceleration to produce these pulses. In testing, these structures have withstood more than 320 MW of power and produced accelerating gradients of over 100 MV/m. The next step of testing these structures will use a more conventional, klystron power source. A new standing wave DDA structure is being fabricated for testing on the Nextef2 test stand at KEK. Simulation results of this structure show that at 50 MW of input power, the DDA produces a 457 MV/m gradient. It also has a large shunt impedance of 160 MΩ/m and an r/Q of 21.6 kΩ/m. Cold testing of this structure will be conducted July 2024 with high power testing to be done in August.

Primary author

Sarah Weatherly (Illinois Institute of Technology)

Co-authors

Ben Freemire (Euclid Beamlabs LLC) Chunguang Jing (Argonne National Laboratory) Eric Wisniewski (Illinois Institute of Technology) John Power (Argonne National Laboratory) Scott Doran (Argonne National Laboratory)

Presentation materials

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