Compact free-electron lasers exploiting media with periodically modulated refractive index

V. Apollonov, A. Artemyev, M. Fedorov, E. Shapiro, J. McIver
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Abstract

Amplification in free-electron lasers exploiting media with periodically modulated refractive indices is studied in the regime of a large modulation. The conditions for realization of the large-modulation regime in a layered plasma medium and in a periodic dielectric superlattice-like medium are established. The maximized gain, the corresponding saturation field and efficiency, as well as the optimal electron energy and propagation direction are determined and compared to each other for different types of modulated media. It is shown that the large-modulation regime makes it possible to extend significantly the operation frequency domain of the FEL employing a low-relativistic electron beam. Relationship with the Cherenkov and stimulated resonance-transition-radiation FELs is discussed.
利用具有周期性调制折射率介质的紧凑自由电子激光器
研究了大调制条件下,利用周期调制折射率介质的自由电子激光器的放大特性。建立了在层状等离子体介质和周期性介电超晶格介质中实现大调制的条件。确定了不同类型调制介质的最大增益、相应的饱和场和效率、最佳电子能量和传播方向,并进行了比较。结果表明,大调制体制使得使用低相对论性电子束的自由电子激光器的工作频域有可能得到显著的扩展。讨论了切伦科夫场效应与受激共振跃迁辐射场效应的关系。
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