...
首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Development of a compact electromagnetic undulator for linac-based coherent THz radiation source in Thailand
【24h】

Development of a compact electromagnetic undulator for linac-based coherent THz radiation source in Thailand

机译:在泰国开发用于直线加速器相干太赫兹辐射源的紧凑型电磁波荡器

获取原文
获取原文并翻译 | 示例
           

摘要

A linac-based accelerator system at the Plasma and Beam Physics Research Facility of Chiang Mai University in Thailand can produce relativistic femtosecond electron bunches for generating coherent THz radiation. Originally, this accelerator system was built to produce high peak power THz/FIR radiation via transition radiation technique. To extend the system’s capability in production of higher average power and tunable coherent radiation, a project to add an undulator magnet as a source of coherent THz radiation was started. Construction of a compact 40-period electromagnetic undulator with short period length is in progress. Low electricity consumption, inexpensive materials and uncomplicated fabrication process are aimed. An undulator prototype was designed and built to investigate the magnetic field properties and to estimate the possibility on manufacturing of a future undulator magnet. A computer program RADIA was used to model a three-dimensional undulator prototype based on the fabricated magnet material and dimensions. This prototype has 4.5 periods consisting of 8 main-poles and 2 end-poles for magnetic field correction. The simulated peak magnetic field was 0.1858 T or equivalents to an undulator parameter of 0.98. This led to a calculated undulator radiation wavelength at the first harmonic of 109 μmfor electron beam with energy of 10 MeV. This radiation is in the forward direction. After manufacturing, the magnetic field of the undulator prototype was measured and analyzed. The measurement result at an optimal excitation current of 5 A showed that an average period length of 54.8 mm and an average peak magnetic field of 0.1855 T were achieved. The measured undulator parameter was 0.97, which resulted in the undulator radiation wavelength of about 107 μm. A future electromagnetic undulator with 40 periods was designed and will be built based on the study results of this undulator prototype. The estimated angular flux density of the radiation emitted from 40 period undulator magnet is dominated at the first harmonic radiation wavelength of 109 μm, which is equivalent to the radiation frequency of 2.8 THz.
机译:泰国清迈大学等离子和束物理研究设施中基于直线加速器的加速器系统可以产生相对论的飞秒电子束,以产生相干的太赫兹辐射。最初,此加速器系统旨在通过过渡辐射技术产生高峰值功率THz / FIR辐射。为了扩展该系统在产生更高平均功率和可调相干辐射方面的能力,启动了一个项目,增加了一个起伏磁体作为相干THz辐射源。正在开发一种具有短周期长度的紧凑型40周期电磁波荡器。旨在实现低功耗,便宜的材料和简单的制造工艺。设计并制造了波状起伏器原型,以研究磁场特性并估计制造未来波状起伏磁体的可能性。使用计算机程序RADIA根据制造的磁体材料和尺寸对三维起伏器原型进行建模。该原型机有4.5个周期,由8个主磁极和2个端磁极组成,用于磁场校正。模拟的峰值磁场为0.1858 T或等效于0.98的起伏器参数。这导致能量为10MeV的电子束在109​​μm的一次谐波处计算出的起伏器辐射波长。该辐射是向前的。制造后,测量并分析波荡器原型的磁场。在5A的最佳激励电流下的测量结果表明,平均周期长度为54.8mm,平均峰值磁场为0.1855T。测得的波荡器参数为0.97,这导致波荡器辐射波长约为107μm。设计了一种未来的具有40个周期的电磁波荡器,并将基于该波荡器原型的研究结果来构建。从40个周期的起伏器磁体发出的辐射的估计角通量密度在109μm的一次谐波辐射波长下占主导地位,这等于2.8THz的辐射频率。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号