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Textured dysprosium and gadolinium poles for high-field, short-period hybrid undulators

机译:高场,短周期混合起伏器的织构和g极

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摘要

We discuss the feasibility of enhancement of the gap field in a short-period hybrid undulator by using pole inserts with the saturation inductance B_s, over that of iron, 2 T. Dysprosium metal, with the saturation inductance of 3.4 T below 90 K, and Gadolinium with B_s=2.7 T, appear as good candidates as the optimized pole material. However, due to the high magnetic anisotropy of Dy, such a high level of magnetization can only be realized when the external field lies in the basal plane. This implies that the pole has to be single-crystalline or highly textured. Considering that growing large, > 10 mm, Dy single crystals is difficult, we propose secondary recrystallization as a method to induce the required texture in thin Dy and Gd foils. The textured foils can be stacked to produce pole inserts of the desired geometry and orientation. Results of small-scale processing and magnetic measurements of thin (20-60 μ) foils provide evidence that the required texture quality can be achieved by a relatively simple sequence of heat-treatments and cold rolling. The advantage of textured Dy and Gd poles is demonstrated in a several period test undulator.
机译:我们讨论了通过使用具有饱和电感B_s,超过铁2 T的饱和电感B_s的极插入件,在90 K以下的3.4 T的饱和电感来增强短周期混合波动器中的间隙场的可行性,以及B_s = 2.7 T的d似乎是经过优化的极材料的良好候选者。但是,由于Dy的高磁各向异性,仅当外部磁场位于基面时才能实现如此高的磁化强度。这意味着极点必须是单晶或高度纹理化的。考虑到要生长大于10 mm的Dy单晶是困难的,我们提出二次重结晶作为在Dy和Gd薄箔中诱导所需织构的方法。可以将纹理化的箔堆叠以产生期望的几何形状和方向的极插入物。薄箔(20-60μ)的小规模加工和磁测量结果提供了证据,即可以通过相对简单的热处理和冷轧顺序实现所需的纹理质量。多周期测试波荡器证明了织构的Dy和Gd磁极的优势。

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    RadiaBeam Technologies, Inc, 1717 Stewart St., Santa Monica, CA 90404, United States;

    Brookhaven National Laboratory, Upton, NY 11973, United States;

    RadiaBeam Technologies, Inc, 1717 Stewart St., Santa Monica, CA 90404, United States;

    RadiaBeam Technologies, Inc, 1717 Stewart St., Santa Monica, CA 90404, United States,Department of Physics, University of California, Los Angeles, CA 90095, United States;

    Brookhaven National Laboratory, Upton, NY 11973, United States;

    RadiaBeam Technologies, Inc, 1717 Stewart St., Santa Monica, CA 90404, United States;

    RadiaBeam Technologies, Inc, 1717 Stewart St., Santa Monica, CA 90404, United States;

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  • 原文格式 PDF
  • 正文语种 eng
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  • 关键词

    Dysprosium; Undulator; Material science;

    机译:镝;波动器;材料科学;

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