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Transverse trajectory of electron beam in helical-wiggler field

Transverse trajectory of electron beam in helical-wiggler field

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The transverse motion of an individual electron in a magnetic field combined with a realizable helical-wiggler field, self-generated field and axial-guide field is investigated. We study the transverse trajectory of relativistic electron from the equations of motion which are derived from the Hamiltonian by numerical simulation. The effects of self-generated field, positive and reversed axial-guide field are examined.

Abstract

1. Introduction

2. Theoretical model and Hamiltonian

3. Numerical Analysis

4. Conclusions

5. References

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