@article{2c8fbbdbbc9f4eb795dbef041b8255eb,
title = "Measurement of the drift velocity and transverse diffusion of electrons in liquid xenon with the EXO-200 detector",
abstract = "The EXO-200 Collaboration is searching for neutrinoless double β decay using a liquid xenon (LXe) time projection chamber. This measurement relies on modeling the transport of charge deposits produced by interactions in the LXe to allow discrimination between signal and background events. Here we present measurements of the transverse diffusion constant and drift velocity of electrons at drift fields between 20 V/cm and 615 V/cm using EXO-200 data. At the operating field of 380 V/cm EXO-200 measures a drift velocity of 1.705-0.010+0.014mm/μs and a transverse diffusion coefficient of 55±4cm2/s.",
author = "\{EXO-200 Collaboration\} and Albert, \{J. B.\} and Barbeau, \{P. S.\} and D. Beck and V. Belov and M. Breidenbach and T. Brunner and A. Burenkov and Cao, \{G. F.\} and Cen, \{W. R.\} and C. Chambers and B. Cleveland and M. Coon and A. Craycraft and T. Daniels and M. Danilov and Daugherty, \{S. J.\} and J. Daughhetee and J. Davis and S. Delaquis and \{Der Mesrobian-Kabakian\}, A. and R. Devoe and T. Didberidze and J. Dilling and A. Dolgolenko and Dolinski, \{M. J.\} and M. Dunford and W. Fairbank and J. Farine and S. Feyzbakhsh and P. Fierlinger and D. Fudenberg and R. Gornea and K. Graham and G. Gratta and C. Hall and M. Hughes and Jewell, \{M. J.\} and A. Johnson and Johnson, \{T. N.\} and S. Johnston and A. Karelin and Kaufman, \{L. J.\} and R. Killick and T. Koffas and S. Kravitz and R. Kr{\"u}cken and A. Kuchenkov and Kumar, \{K. S.\} and Y. Lan and L. Yang",
note = "We also gratefully acknowledge the KARMEN collaboration for supplying the cosmic-ray veto detectors, and the WIPP for their hospitality. EXO-200 is supported by DOE and NSF in the United States, NSERC in Canada, SNF in Switzerland, IBS in Korea, RFBR in Russia, DFG Cluster of Excellence Universe in Germany, and CAS and ISTCP in China. EXO-200 data analysis and simulation uses resources of the National Energy Research Scientific Computing Center (NERSC).",
year = "2017",
month = feb,
day = "14",
doi = "10.1103/PhysRevC.95.025502",
language = "English (US)",
volume = "95",
journal = "Physical Review C",
issn = "2469-9985",
publisher = "American Physical Society",
number = "2",
}