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Characterization of an Ionization Readout Tile for nEXO

Publication ,  Journal Article
Jewell, M; Schubert, A; Cen, WR; Dalmasson, J; Devoe, R; Fabris, L; Gratta, G; Jamil, A; Li, G; Odian, A; Patel, M; Pocar, A; Qiu, D; Cao, L ...
Published in: Journal of Instrumentation
January 1, 2018

A new design for the anode of a time projection chamber, consisting of a charge-detecting "tile, is investigated for use in large scale liquid xenon detectors. The tile is produced by depositing 60 orthogonal metal charge-collecting strips, 3 mm wide, on a 10 cm × 10 cm fused-silica wafer. These charge tiles may be employed by large detectors, such as the proposed tonne-scale nEXO experiment to search for neutrinoless double-beta decay. Modular by design, an array of tiles can cover a sizable area. The width of each strip is small compared to the size of the tile, so a Frisch grid is not required. A grid-less, tiled anode design is beneficial for an experiment such as nEXO, where a wire tensioning support structure and Frisch grid might contribute radioactive backgrounds and would have to be designed to accommodate cycling to cryogenic temperatures. The segmented anode also reduces some degeneracies in signal reconstruction that arise in large-area crossed-wire time projection chambers. A prototype tile was tested in a cell containing liquid xenon. Very good agreement is achieved between the measured ionization spectrum of a 207Bi source and simulations that include the microphysics of recombination in xenon and a detailed modeling of the electrostatic field of the detector. An energy resolution σ/E=5.5% is observed at 570 keV, comparable to the best intrinsic ionization-only resolution reported in literature for liquid xenon at 936 V/cm.

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Published In

Journal of Instrumentation

DOI

EISSN

1748-0221

Publication Date

January 1, 2018

Volume

13

Issue

1

Related Subject Headings

  • Nuclear & Particles Physics
  • 51 Physical sciences
  • 40 Engineering
  • 09 Engineering
  • 02 Physical Sciences
 

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Jewell, M., Schubert, A., Cen, W. R., Dalmasson, J., Devoe, R., Fabris, L., … Raguzin, E. (2018). Characterization of an Ionization Readout Tile for nEXO. Journal of Instrumentation, 13(1). https://doi.org/10.1088/1748-0221/13/01/P01006
Jewell, M., A. Schubert, W. R. Cen, J. Dalmasson, R. Devoe, L. Fabris, G. Gratta, et al. “Characterization of an Ionization Readout Tile for nEXO.” Journal of Instrumentation 13, no. 1 (January 1, 2018). https://doi.org/10.1088/1748-0221/13/01/P01006.
Jewell M, Schubert A, Cen WR, Dalmasson J, Devoe R, Fabris L, et al. Characterization of an Ionization Readout Tile for nEXO. Journal of Instrumentation. 2018 Jan 1;13(1).
Jewell, M., et al. “Characterization of an Ionization Readout Tile for nEXO.” Journal of Instrumentation, vol. 13, no. 1, Jan. 2018. Scopus, doi:10.1088/1748-0221/13/01/P01006.
Jewell M, Schubert A, Cen WR, Dalmasson J, Devoe R, Fabris L, Gratta G, Jamil A, Li G, Odian A, Patel M, Pocar A, Qiu D, Wang Q, Wen LJ, Albert JB, Anton G, Arnquist IJ, Badhrees I, Barbeau P, Beck D, Belov V, Bourque F, Brodsky JP, Brown E, Brunner T, Burenkov A, Cao GF, Cao L, Chambers C, Charlebois SA, Chiu M, Cleveland B, Coon M, Craycraft A, Cree W, Côté M, Daniels T, Daugherty SJ, Daughhetee J, Delaquis S, Mesrobian-Kabakian AD, Didberidze T, Dilling J, Ding YY, Dolinski MJ, Dragone A, Fairbank W, Farine J, Feyzbakhsh S, Fontaine R, Fudenberg D, Giacomini G, Gornea R, Hansen EV, Harris D, Hasan M, Heffner M, Hoppe EW, House A, Hufschmidt P, Hughes M, Hößl J, Ito Y, Iverson A, Jiang XS, Johnston S, Karelin A, Kaufman LJ, Koffas T, Kravitz S, Krücken R, Kuchenkov A, Kumar KS, Lan Y, Leonard DS, Li S, Li Z, Licciardi C, Lin YH, Maclellan R, Michel T, Mong B, Moore D, Murray K, Newby RJ, Ning Z, Njoya O, Nolet F, Odgers K, Oriunno M, Orrell JL, Ostrovskiy I, Overman CT, Ortega GS, Parent S, Piepke A, Pratte JF, Radeka V, Raguzin E. Characterization of an Ionization Readout Tile for nEXO. Journal of Instrumentation. 2018 Jan 1;13(1).
Journal cover image

Published In

Journal of Instrumentation

DOI

EISSN

1748-0221

Publication Date

January 1, 2018

Volume

13

Issue

1

Related Subject Headings

  • Nuclear & Particles Physics
  • 51 Physical sciences
  • 40 Engineering
  • 09 Engineering
  • 02 Physical Sciences