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研究生: 溫詠翔
Wen, Yung-Hsiang
論文名稱: 在電子直線加速器速度群聚效應中螺線磁鐵對束流品質之影響研究
Study on the Effect of Solenoid Magnetic Field on Beam Quality in Velocity Bunching
指導教授: 劉偉強
Lau, Wai-Keung
張存續
Chang, Tsun-Hsu
口試委員: 李安平
Lee, An-Ping
柳克強
Leou, Keh-Chyang
學位類別: 碩士
Master
系所名稱: 理學院 - 先進光源科技學位學程
Degree Program of Science and Technology of Synchrotron Light Source
論文出版年: 2017
畢業學年度: 106
語文別: 中文
論文頁數: 55
中文關鍵詞: 速度群聚效應電子束直線加速器螺線圈磁鐵
外文關鍵詞: velocity bunching, electron beam, linac, solenoid magnet
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  • 利用速度群聚效應壓縮電子束時,在壓縮前期電子束的空間電荷作用會對電子束的品質有很大的影響,此時需要一個外加螺線圈磁鐵,產生軸對稱的磁場來克服橫向的空間電荷效應,但因為實際的儀器架設有許多部份避開,如冷卻水管、電流輸入端…等,因此螺線圈的外包鐵殼無法做到理想的圓柱對稱,進而影響到磁場分布。此外,螺線圈安裝上的誤差,同樣會使電子束感受到不對稱的磁場。本文中首先利用模擬軟體優化有外加螺線圈磁鐵後直線加速器出口處電子束的品質,並探討螺線圈磁鐵偏移所造成的影響。實驗的部分,主要量測螺線圈磁鐵提供不同的磁場下,電子束橫向的大小與束散度的變化,驗證螺線圈磁鐵的效果。


    Space-charge effect is not negligible during the early stage of beam acceleration in a photoinjector rf linac that is operated for generation of short electron pulses by velocity bunching. A solenoid with iron shield can be used to provide the required axis-symmetric magnetic field to balance the radial space-charge force. However, the iron shield cannot be perfectly symmetric because openings are reserved for feeding water pipes and electrical cables to the coils. In addition, alignment errors of the solenoid may also spoil the symmetry of the system. In this study, simulation are carried out to optimize electron beam quality at linac exit and investigate how does the non-axisymmetric solenoid field of different origins influence beam properties, such as beam size, transverse emittance during the rf bunch compression. Beam size and transverse emittance are measured to check the adequacy of the linac solenoid magnet design.

    摘要 i Abstract ii 致謝 iii 目錄 iv 圖目錄 vi 表目錄 ix 第一章 簡介 1 1.1 背景 1 1.2 研究動機 2 1.3 研究目的 4 第二章 文獻回顧 5 2.1 縱向束散度(Longitudinal Emittance) 5 2.2 橫向束散度(Transverse Emittance) 8 第三章 基本原理 12 3.1 速度群聚效應[5, 6] 12 3.2 螺線圈磁鐵聚焦原理[9] 15 3.3束散度補償 (Emittance Compensation)[10, 11] 18 第四章 程式模擬 21 4.1 電子束速度群聚效應模擬 (No Soleonid) 21 4.2 螺線圈磁鐵設計與分析 25 4.3 外加螺線圈磁鐵後之電子束模擬 31 4.4 螺線圈磁鐵校準誤差對電子束之影響 37 4.4.1 位置偏移 37 4.4.2 角度偏移 40 第五章 實驗與測量方式 42 5.1 實驗測量原理 42 5.2 實驗儀器架設與步驟 44 5.3 實驗結果與比較 46 5.3.1 螺線圈磁場與電子束橫向大小關係 46 5.3.2 量測螺線圈磁鐵作用下之電子束散度 48 第六章 結論 51 參考資料 52 附錄 54 A-1 linac螺線圈磁場強度估算: 54

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