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Removal of long-lived $^{222}$Rn daughters by electropolishing thin layers of stainless steel

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arxiv 1404.5843 v1 pith:IMFAV5KI submitted 2014-04-23 physics.ins-det hep-exnucl-ex

classification physics.ins-dethep-exnucl-ex
keywords daughterselectropolishingremovalradoncompromisingdecaydemonstratelayers
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abstract

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 $\mu$m 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.

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    A recirculating electrostatic-chamber radon assay system, calibrated with an external radon source, reports material emanation rates down to about 20 microbecquerels and gives new screening data for low-background det...

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