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来自周期性束流的史密斯-珀塞尔辐射。

Smith-Purcell radiation from periodic beams.

作者信息

Sergeeva D Y, Potylitsyn A P, Tishchenko A A, Strikhanov M N

出版信息

Opt Express. 2017 Oct 16;25(21):26310-26328. doi: 10.1364/OE.25.026310.

Abstract

Smith-Purcell effect is well known as a source of monochromatic electromagnetic radiation. In this paper we present the generalized theory of Smith-Purcell radiation from periodic beams. The form-factors describing both coherent and incoherent regimes of radiation are calculated. The radiation characteristics are investigated in two practically important frequency ranges, THz and X-ray, for two modulation profiles, most frequently used in practice - a train of microbunches and a Gaussian-shaped one, characterized by sinusoidal modulation with an arbitrary modulation depth. On the base of the theory developed we show that a modulated electron beam consisting of a set of bunches makes it possible to improve significantly the spectral line monochromaticity of the light emitted, reaching values better than 1% for short gratings. We demonstrate as well that Smith-Purcell radiation can be used for non-destructive diagnostics of the depth of modulation for partially modulated beams. These findings not only open up a new way to manipulate the light emission using Smith-Purcell effect but also promise a profound impact for other radiation sources based on charged particle beams, such as undulator radiation in FELs, next-generation X-ray radiation source based on inverse Compton scattering, in a wide range from THz to X-rays.

摘要

史密斯-珀塞尔效应作为一种单色电磁辐射源广为人知。在本文中,我们提出了周期性束流的史密斯-珀塞尔辐射的广义理论。计算了描述辐射相干和非相干状态的形状因子。针对太赫兹和X射线这两个实际重要的频率范围,研究了两种在实践中最常用的调制分布下的辐射特性——一串微束团和高斯形状的分布,其特征是具有任意调制深度的正弦调制。基于所发展的理论,我们表明由一组束团组成的调制电子束能够显著提高所发射光的谱线单色性,对于短光栅而言,其单色性可达优于1%的值。我们还证明了史密斯-珀塞尔辐射可用于对部分调制束流的调制深度进行无损诊断。这些发现不仅为利用史密斯-珀塞尔效应操控发光开辟了一条新途径,而且有望对基于带电粒子束的其他辐射源产生深远影响,例如自由电子激光中的波荡器辐射、基于逆康普顿散射的下一代X射线辐射源,涵盖从太赫兹到X射线的广泛范围。

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