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Dispersion relation and growth rate for a corrugated channel free-electron laser with a helical wiggler pump
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作者 A.Hasanbeigi H. Mehdian 《Chinese Physics B》 SCIE EI CAS CSCD 2013年第7期364-368,共5页
The effects of corrugated ion channels on electron trajectories and spatial growth rate for a free-electron laser with a one-dimensional helical wiggler have been investigated. Analysis of the steady-state electron tr... The effects of corrugated ion channels on electron trajectories and spatial growth rate for a free-electron laser with a one-dimensional helical wiggler have been investigated. Analysis of the steady-state electron trajectories is performed by solving the equations of motion. Our results show that the presence of a corrugated channel shifts the resonance frequency to smaller values of ion channel frequency. The sixth-order dispersion equation describing the coupling between the electrostatic beam mode and the electromagnetic mode has also been derived. The dispersion relation characteristic is analyzed in detail by numerical solution. Results show that the growth rate of instability in the presence of corrugated ion channels can be greatly enhanced relative to the case of an uniform ion channel. 展开更多
关键词 corrugated ion-channel free-electron laser growth rate helical wiggler
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The effects of self-fields on the electron trajectory and gain in a two-stream electromagnetically pumped free-electron laser with axial guiding field
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作者 H.Mehdian S.Saviz 《Chinese Physics B》 SCIE EI CAS CSCD 2010年第1期366-371,共6页
A theory of a two-stream flee-electron laser in a combined electromagnetic wiggler (EMW) is developed, in which we use an axial-guide magnetic field and take into account the effects of the self-fields. The electron... A theory of a two-stream flee-electron laser in a combined electromagnetic wiggler (EMW) is developed, in which we use an axial-guide magnetic field and take into account the effects of the self-fields. The electron trajectories and the small signal gain are derived. The stability of the trajectories, the characteristics of the linear-gain, and the normalised maximum gain are studied numerically. The results show that there are nine stable groups of orbits in the presence of self-fields instead of seven groups reported in the absence of the self-field. It is also shown that the normalised gains of four groups of the orbits are decreasing and those for the rest of them are increasing with growing J20. Furthermore, it is found that the two-stream laser with seff-field enhances the maximum gain in comparison with the single stream case. 展开更多
关键词 free electron laser two-stream
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Effects of self-fields on electron trajectory and gain in two-stream electromagnetically pumped free-electron laser with ion channel guiding
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作者 S.Saviz Farzin M.Aghamir +1 位作者 H.Mehdian M.Ghorannevis 《Chinese Physics B》 SCIE EI CAS CSCD 2011年第7期158-164,共7页
A theory for the two-stream free-electron laser with an electromagnetic wiggler (EMW) and an ion channel guiding is developed. In the analysis, the effects of self-fields have been taken into account. The electron t... A theory for the two-stream free-electron laser with an electromagnetic wiggler (EMW) and an ion channel guiding is developed. In the analysis, the effects of self-fields have been taken into account. The electron trajectories and the small signal gain are derived. The stability of the trajectories, the characteristics of the linear gain and the normalized maximum gain are studied numerically. The dependence of the normalized frequency ω corresponding to the maximum gain on the ion-channel frequency is presented. The results show that there are seven groups of orbits in the presence of the self-fields, which are similar to those reported in the absence of the self-fields. It is also shown that the normalized gains of 2 groups decrease while the rest increase with the increasing normalized ion-channel frequency. Furthermore, it is found that the two-stream instability and the self-field lead to a decrease in the maximum gain except for group 4. 展开更多
关键词 free electron laser two-stream
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Coupling Instability of a Warm Relativistic Electron Beam with Ion-Channel Guiding
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作者 A.Rostami K.Hajisharifi +1 位作者 H.Mehdian A.Hasanbeigi 《Communications in Theoretical Physics》 SCIE CAS CSCD 2019年第10期1236-1240,共5页
In this paper, the coupling instability of warm relativistic electron beam(WREB) propagating through the ion channel guiding is investigated in detail. Obtaining the equilibrium state of the system by considering the ... In this paper, the coupling instability of warm relativistic electron beam(WREB) propagating through the ion channel guiding is investigated in detail. Obtaining the equilibrium state of the system by considering the self-electric and azimuthal magnetic field, the fluid-Maxwell equations as well as linear perturbation theory are employed to derive the dispersion relation of the excited modes in the system. Numerical analysis of the obtained dispersion relation shows that the electromagnetic(EM) instability can be induced nearly the center of the beam through coupling between the fast electron plasma wave(FEPW), originated from the longitudinal oscillation of WREB, and fast forward electromagnetic wave(FFEW). In this sense, growing the perturbation amplitude occurs due to transport the kinetic energy of WREB to the EM wave at the specific frequency range, where the phase velocity of FEPW and FFEW is coincided. The results of the present investigation will greatly contribute to the understanding of the stability of the warm relativistic electron beam in laboratory experiments, such as in free electron laser experiments, where the ion-channel guiding is used to confine the electrons against the self-repulsive forces generated by the beam itself. 展开更多
关键词 COUPLING INSTABILITY WARM relativistic electron beam fluid-Maxwell equations linear perturbation theory
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