On radiation emission from a microbunched beam with wavefront tilt and its experimental observation
- 1. European XFEL GmbH, Hamburg (Germany)
- 2. Deutsches Elektronen-Synchrotron (DESY), Hamburg (Germany)
Description
In this paper we compare experimental observations and theory of radiation emission from a microbunched beam with microbunching wavefront tilt with respect to the direction of motion. The theory refers to the work of T. Tanaka, H. Kitamura, and T. Shintake (2004), which predicts, in this case, exponential suppression of coherent radiation along the kicked direction. The observations refer to a recent experiment performed at the LCLS, where a microbunched beam was kicked by a bend and sent to a radiator undulator. The experiment resulted in the emission of strong coherent radiation that had its maximum along the kicked direction of motion, when the undulator parameter was detuned to a value larger than the nominal one. We first analyze the theory in detail, and we confirm the correctness of its derivation according to the conventional theory of radiation emission from charged particles. Subsequently, we look for possible peculiarities in the experiment, which may not be modeled by the theory. We show that only spurious effects are not accounted for. We conclude that the experiment defies explanation in terms of the conventional theory of radiation emission.
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Additional details
Publishing Information
- Imprint Pagination
- 18 p.
- ISSN
- 0418-9833
- Report number
- DESY--17-093
INIS
- Country of Publication
- Germany
- Country of Input or Organization
- Germany
- INIS RN
- 48080424
- Subject category
- S43: PARTICLE ACCELERATORS;
- Descriptors DEI
- ANALYTICAL SOLUTION; ANGULAR DISTRIBUTION; BEAM BENDING MAGNETS; BEAM BUNCHING; COHERENT RADIATION; ELECTRIC FIELDS; ELECTRON BEAMS; MAGNETIC DIPOLES; ONDULATOR RADIATION; WAVE EQUATIONS; WAVE PROPAGATION; WIGGLER MAGNETS; X RADIATION
- Descriptors DEC
- BEAM DYNAMICS; BEAMS; BREMSSTRAHLUNG; DIFFERENTIAL EQUATIONS; DIPOLES; DISTRIBUTION; DYNAMICS; ELECTROMAGNETIC RADIATION; EQUATIONS; EQUIPMENT; IONIZING RADIATIONS; LEPTON BEAMS; MAGNETS; MATHEMATICAL SOLUTIONS; MECHANICS; MULTIPOLES; PARTIAL DIFFERENTIAL EQUATIONS; PARTICLE BEAMS; RADIATIONS