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Bass, Christopher D.; Sandorfi, Andy M.; Bade, C.; Blecher, M.; Caracappa, A.; D'Angelo, A.; Deur, A.; Dezern, G.; Glueckler, H.; Hanretty, C.; Ho, D.; Kageya, T.; Khandaker, M.; Laine, V.; Lincoln, F.; Lowry, M. M.; Mahon, J. C.; Connell, T. O.; Peng, P.; Preedom, B.; Seyfarth, H.; Stroeher, H.; Thorn, C. E.; Wei, X.; Whisnant, C. S.
Thomas Jefferson National Accelerator Facility, Newport News, VA (United States). Funding organisation: USDOE SC Office of Nuclear Physics (SC-26) (United States)2014
Thomas Jefferson National Accelerator Facility, Newport News, VA (United States). Funding organisation: USDOE SC Office of Nuclear Physics (SC-26) (United States)2014
AbstractAbstract
[en] A device has been developed with moveable liquid nitrogen and liquid helium volumes that is capable of reaching over two meters into the coldest regions of a cryostat or dilution refrigerator and reliably extracting or installing a target of solid, polarized hydrogen deuteride (HD). This Transfer Cryostat incorporates a cylindrical neodymium rare-earth magnet that is configured as a Halbach dipole, which is maintained at 77 K and produces a 0.1 T field around the HD target. Multiple layers provide a hermetic 77 K-shield as the device is used to maintain a target at 2 K during a transfer between cryostats. Tests with frozen-spin HD show negligible polarization loss for either H or D over typical transfer periods. Multiple target transfers with this apparatus have shown an overall reliability of about 95% per transfer, which is a significant improvement over earlier versions of the device
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JLAB-PHY--13-1788; DOE/OR--23177-2732; OSTIID--1109076; AC02-98-CH10886 ; AC05-06OR23177; Available from: DOI:10.1016/j.nima.2013.10.056; Country of input: United States
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Journal Article
Journal
Nuclear Instruments and Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment; ISSN 0168-9002; ; v. 737; p. 107-116
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