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Dong-O Jeon

Publications and source records attributed to Dong-O Jeon.

3 recordsLinked to original sources

Dominance of Particle Resonances over Parametric Instabilities in High-Intensity Linear Accelerators

For high-intensity linear accelerators, space-charge halo mechanisms are largely classified into two families: particle resonances and parametric instabilities. The dominance between the fourth-order particle resonance and the envelope instability has been argued and studied. Our studies and previous literatures indicate the dominance of particle resonances over parametric instabilities in high-intensity linear accelerators. Any counter evidence has not been found yet. Also all the studies indicate that parametric instabilities are unlikely to be observed in actual linear accelerators unless waterbag or KV beams are generated. We propose a way to overcome the previous design rule to avoid the zero-current phase advance sigma_o > 90° for the high-intensity linac. The interplay is presented of the envelope instability and the fourth-order parametric instability.

physics.acc-ph

Mitigation of Space-Charge-Driven Resonance and Instability in High-Intensity Linear Accelerators via Beam Spinning

For modern high-intensity linear accelerators, the well-known envelope instability and recently reported fourth-order particle resonance impose a fundamental operational limit (i.e., zero-current phase advance should be less than 90 deg). Motivated by the stability of spinning flying objects, we propose a novel approach of using spinning beams to surpass this limit. We discovered that spinning beams have an intrinsic characteristic that can suppress the impact of the fourth-order resonance on emittance growth and the associated envelope instability.

physics.acc-ph

Measurement Error Effects of Beam Parameters Determined by Beam Profiles

A conventional method to determine beam parameters is using the profile measurements and converting them into the values of twiss parameters and beam emittance at a specified position. The beam information can be used to improve transverse beam matching between two different beam lines or accelerating structures. This work is related with the measurement error effects of the beam parameters and the optimal number of profile monitors in a section between MEBT (medium energy beam transport) and QWR (quarter wave resonator) of RAON linear accelerator.

physics.acc-ph