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Removal of long-lived ~(222)Rn daughters by electropolishing thin layers of stainless steel

机译:通过电抛光薄层不锈钢去除长寿命〜(222)rn女儿

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Long-lived alpha and beta emitters in the ~(222)Rn decay chain on detector surfaces may be the limiting background in many experiments attempting to detect dark matter or neutrinoless double beta decay. Removal of tens of microns of material via electropolishing has been shown to be effective at removing radon daughters implanted into material surfaces. Some applications, however, require the removal of uniform and significantly smaller thicknesses. Here, we demonstrate that electropolishing < 1 μm from stainless-steel plates reduces the contamination efficiently, by a factor > 100. Examination of electropolished wires with a scanning electron microscope confirms that the thickness removed is reproducible and reasonably uniform. Together, these tests demonstrate the effectiveness of removal of radon daughters for a proposed low-radiation, multi-wire proportional chamber (the BetaCage), without compromising the screener's energy resolution. More generally, electropolishing thin layers of stainless steel may effectively remove radon daughters without compromising precision-machined parts.
机译:在〜(222)的〜(222)中的长期alpha和β发射器在探测器表面上的衰减链中可以是许多试图检测暗物质或中毒性双β腐烂的许多实验中的限制背景。通过电抛光去除几十微米材料在移除植入材料表面的氡气体时有效。然而,一些应用需要去除均匀和明显较小的厚度。这里,我们证明了来自不锈钢板的电抛光1μm有效地降低了污染,通过扫描电子显微镜检查了所移除的厚度和合理均匀的厚度。这些测试展示了去除氡子位的有效性,以获得提出的低辐射,多线比例室(贝曲面),而不会影响筛分器的能量分辨率。更一般地,电抛光薄层的不锈钢层可以有效地除去氡气体而不会损害精密加工的部件。

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