A direct RF-sampling LLRF system generated square, pulsed, phase-reversed, and phase-ramped C-band RF pulses at megawatt power levels, including the rapid phase reversal used for SLED pulse compression.
ESPPU INPUT: C$^3$ within the "Linear Collider Vision"
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abstract
The Linear Collider Vision calls for a Linear Collider Facility with a physics reach from a Higgs Factory to the TeV-scale with $e^+e^{-}$ collisions. One of the technologies under consideration for the accelerator is a cold-copper distributed-coupling linac capable of achieving high gradient. This technology is being pursued by the C$^3$ collaboration to understand its applicability to future colliders and broader scientific applications. In this input we share the baseline parameters for a C$^3$ Higgs-factory and the energy reach of up to 3 TeV in the 33 km tunnel foreseen under the Linear Collider Vision. Recent results, near-term plans and future R\&D needs are highlighted.
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High Precision RF Pulse Shaping with Direct RF Sampling for Future Linear Accelerators
A direct RF-sampling LLRF system generated square, pulsed, phase-reversed, and phase-ramped C-band RF pulses at megawatt power levels, including the rapid phase reversal used for SLED pulse compression.