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Description
Bimodal accelerating structure capable of supporting two resonant modes in a single cell is investigated as a compact solution for simultaneous acceleration and manipulation of the bunch length. Beam dynamics simulations performed with RF-Track are used to quantify the longitudinal phase-space evolution and are benchmarked against a conventional separated-function configuration. The bimodal scheme provides a substantially enhanced effective accelerating gradient. In bunch-lengthening and bunch-compression operation, it reproduces the performance of the separated configuration without generating additional higher-order fields. These results confirm the viability of integrating accelerating and phase-space-manipulation functions within a single RF unit.
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