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Featured researches published by C. Hall.


Physical Review Letters | 2012

Search for Neutrinoless Double-Beta Decay in 136 Xe with EXO-200

M. Auger; A. P. Waite; W. Feldmeier; T. N. Johnson; M. Hughes; P. C. Rowson; A. Kuchenkov; J. D. Wright; J.-L. Vuilleumier; T. Walton; K. Graham; C. G. Davis; A. Pocar; David A. Sinclair; K. Hall; A. Odian; S. Delaquis; K.S. Kumar; L. J. Kaufman; R. MacLellan; K. Twelker; M. Breidenbach; R. DeVoe; A. Burenkov; G. Giroux; S. Herrin; A. Sabourov; T. Brunner; P. Vogel; L. Yang

We report on a search for neutrinoless double-beta decay of 136Xe with EXO-200. No signal is observed for an exposure of 32.5 kg yr, with a background of ∼1.5×10(-3)  kg(-1) yr(-1)  keV(-1) in the ±1σ region of interest. This sets a lower limit on the half-life of the neutrinoless double-beta decay T(1/2)(0νββ)(136Xe)>1.6×10(25)  yr (90% C.L.), corresponding to effective Majorana masses of less than 140-380 meV, depending on the matrix element calculation.


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2013

The Large Underground Xenon (LUX) Experiment

D. S. Akerib; X. Bai; S. Bedikian; E. Bernard; A. Bernstein; A. Bolozdynya; A. Bradley; D. Byram; S. B. Cahn; C. Camp; M.C. Carmona-Benitez; D. Carr; J.J. Chapman; A.A. Chiller; C. Chiller; K. Clark; T. Classen; T. Coffey; A. Curioni; E. Dahl; S. Dazeley; L. de Viveiros; A. Dobi; E. Dragowsky; E. Druszkiewicz; B. Edwards; C.H. Faham; S. Fiorucci; R.J. Gaitskell; K.R. Gibson

The Large Underground Xenon (LUX) collaboration has designed and constructed a dual-phase xenon detector, in order to conduct a search for Weakly Interacting Massive Particles (WIMPs), a leading dark matter candidate. The goal of the LUX detector is to clearly detect (or exclude) WIMPS with a spin independent cross-section per nucleon of 2×10-46cm2, equivalent to ∼1event/100kg/month in the inner 100-kg fiducial volume (FV) of the 370-kg detector. The overall background goals are set to have <1 background events characterized as possible WIMPs in the FV in 300 days of running. This paper describes the design and construction of the LUX detector.


Physical Review Letters | 2012

Search for Neutrinoless Double-Beta Decay in 136Xe with EXO-200

M. Auger; D. J. Auty; P. S. Barbeau; E. Beauchamp; V. Belov; C. Benitez-Medina; M. Breidenbach; T. Brunner; A. Burenkov; B. Cleveland; S. Cook; T. Daniels; M. Danilov; C. G. Davis; S. Delaquis; R. DeVoe; A. Dobi; M. J. Dolinski; A. Dolgolenko; M. Dunford; W. Fairbank; J. Farine; W. Feldmeier; P. Fierlinger; D. Franco; G. Giroux; R. Gornea; K. Graham; G. Gratta; C. Hall

We report on a search for neutrinoless double-beta decay of 136Xe with EXO-200. No signal is observed for an exposure of 32.5 kg yr, with a background of ∼1.5×10(-3)  kg(-1) yr(-1)  keV(-1) in the ±1σ region of interest. This sets a lower limit on the half-life of the neutrinoless double-beta decay T(1/2)(0νββ)(136Xe)>1.6×10(25)  yr (90% C.L.), corresponding to effective Majorana masses of less than 140-380 meV, depending on the matrix element calculation.


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2008

Systematic study of trace radioactive impurities in candidate construction materials for EXO-200

D.S. Leonard; P. Grinberg; P. Weber; E. Baussan; Z. Djurcic; G. Keefer; A. Piepke; A. Pocar; J.-L. Vuilleumier; J.-M. Vuilleumier; D. Akimov; A. Bellerive; M. Bowcock; M. Breidenbach; A. Burenkov; R. Conley; W. Craddock; M. Danilov; R. DeVoe; M. S. Dixit; A. Dolgolenko; I. Ekchtout; W. Fairbank; J. Farine; P. Fierlinger; B. Flatt; G. Gratta; M. P. Green; C. Hall; K. Hall

The Enriched Xenon Observatory (EXO) will search for double beta decays of 136Xe. We report the results of a systematic study of trace concentrations of radioactive impurities in a wide range of raw materials and finished parts considered for use in the construction of EXO-200, the first stage of the EXO experimental program. Analysis techniques employed, and described here, include direct gamma counting, alpha counting, neutron activation analysis, and high-sensitivity mass spectrometry.


Physical Review B | 2003

Correlated fluctuations between luminescence and ionization in liquid xenon

E. Conti; R. DeVoe; G. Gratta; T. Koffas; S. Waldman; J. Wodin; D. Akimov; G. Bower; M. Breidenbach; R. Conley; M. Danilov; Z. Djurcic; A. Dolgolenko; C. Hall; A. Odian; A. Piepke; C. Y. Prescott; P.C. Rowson; K. Skarpaas; J.-L. Vuilleumier; K. Wamba; O. Zeldovich

The ionization of liquefied noble gases by radiation is known to be accompanied by fluctuations much larger than predicted by Poisson statistics. We have studied the fluctuations of both scintillation and ionization in liquid xenon and have measured, for the first time, a strong anti-correlation between the two at a microscopic level, with coefficient -0.80 < {rho}{sub ep} < -0.60. This provides direct experimental evidence that electron-ion recombination is partially responsible for the anomalously large fluctuations and at the same time allows substantial improvement of calorimetric energy resolution.


Journal of Instrumentation | 2012

The EXO-200 detector, part I: detector design and construction

M. Auger; D. J. Auty; P.S. Barbeau; L. Bartoszek; E. Baussan; E. Beauchamp; C. Benitez-Medina; M. Breidenbach; D. Chauhan; B. Cleveland; R. Conley; J. Cook; S. Cook; A. Coppens; W.W. Craddock; T. Daniels; C. G. Davis; J. Davis; R. DeVoe; A. Dobi; M. J. Dolinski; M. Dunford; W. Fairbank; J. Farine; P. Fierlinger; D. Franco; G. Giroux; R. Gornea; K. Graham; G. Gratta

EXO-200 is an experiment designed to search for double beta decay of 136Xe with a single-phase, liquid xenon detector. It uses an active mass of 110 kg of xenon enriched to 80.6% in the isotope 136 in an ultra-low background time projection chamber capable of simultaneous detection of ionization and scintillation. This paper describes the EXO-200 detector with particular attention to the most innovative aspects of the design that revolve around the reduction of backgrounds, the efficient use of the expensive isotopically enriched xenon, and the optimization of the energy resolution in a relatively large volume.


Journal of Physics: Conference Series | 2010

The LUX dark matter search

D. N. McKinsey; D. S. Akerib; S. Bedikian; A. Bernstein; A. Bolozdynya; A. Bradley; J.J. Chapman; K. Clark; T. Classen; A. Curioni; E Dahl; S. Dazeley; M. R. Dragowsky; L. de Viveiros; E. Druszkiewicz; S. Fiorucci; R.J. Gaitskell; C. Hall; C. Hernandez Faham; L. Kastens; K. Kazkaz; R. Lander; D.S. Leonard; D.C. Malling; R. Mannino; Dongming Mei; J. Mock; J.A. Nikkel; P. Phelps; T. Shutt

The Large Underground Xenon (LUX) experiment is a liquid xenon time projection chamber designed for extremely low levels of radioactive background in its fiducial volume. The overall liquid xenon mass is 300 kg, with a 100 kg fiducial mass. LUX is currently under construction, and integration of the full detector will begin in Fall 2009 at the Sanford Underground Science and Engineering Laboratory in South Dakota. The LUX sensitivity to the WIMP-nucleon spin-independent scattering cross-section will be 7 × 10-46 cm2 at 100 GeV after 300 days of low-background operation.


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2013

An Ultra-Low Background PMT for Liquid Xenon Detectors

D. S. Akerib; X. Bai; E. Bernard; A. Bernstein; A. Bradley; D. Byram; S. B. Cahn; M.C. Carmona-Benitez; D. Carr; J.J. Chapman; K. Clark; T. Coffey; B. Edwards; L. de Viveiros; M. R. Dragowsky; E. Druszkiewicz; C.H. Faham; S. Fiorucci; R.J. Gaitskell; K.R. Gibson; C. Hall; M. Hanhardt; B. Holbrook; M. Ihm; R. G. Jacobsen; L. Kastens; K. Kazkaz; N.A. Larsen; C. Lee; A. Lindote

Results are presented from radioactivity screening of two models of photomultiplier tubes designed for use in current and future liquid xenon experiments. The Hamamatsu 5.6 cm diameter R8778 PMT, used in the LUX dark matter experiment, has yielded a positive detection of four common radioactive isotopes: 238U, 232Th, 40K, and 60Co. Screening of LUX materials has rendered backgrounds from other detector materials subdominant to the R8778 contribution. A prototype Hamamatsu 7.6 cm diameter R11410 MOD PMT has also been screened, with benchmark isotope counts measured at <0.4 238U/<0.3 232Th/<8.3 40K/2.0±0.2 60Co mBq/PMT. This represents a large reduction, equal to a change of ×124 238U/×19 232Th/×18 40K per PMT, between R8778 and R11410 MOD, concurrent with a doubling of the photocathode surface area (4.5–6.4 cm diameter). 60Co measurements are comparable between the PMTs, but can be significantly reduced in future R11410 MOD units through further material selection. Assuming PMT activity equal to the measured 90% upper limits, Monte Carlo estimates indicate that replacement of R8778 PMTs with R11410 MOD PMTs will change LUX PMT electron recoil background contributions by a factor of ×125 after further material selection for 60Co reduction, and nuclear recoil backgrounds by a factor of ×136. The strong reduction in backgrounds below the measured R8778 levels makes the R11410 MOD a very competitive technology for use in large-scale liquid xenon detectors.


Physical Review D | 2016

Tritium calibration of the LUX dark matter experiment

D. S. Akerib; H.M. Araújo; X. Bai; A.J. Bailey; J. Balajthy; P. Beltrame; E. Bernard; A. Bernstein; T. P. Biesiadzinski; E. M. Boulton; A. Bradley; R. Bramante; S. B. Cahn; M.C. Carmona-Benitez; C. Chan; J.J. Chapman; A.A. Chiller; C. Chiller; A. Currie; J. E. Cutter; T. J. R. Davison; L. de Viveiros; A. Dobi; J. Dobson; E. Druszkiewicz; Blair Edwards; C.H. Faham; S. Fiorucci; R.J. Gaitskell; V. M. Gehman

We present measurements of the electron-recoil (ER) response of the LUX dark matter detector based upon 170 000 highly pure and spatially uniform tritium decays. We reconstruct the tritium energy spectrum using the combined energy model and find good agreement with expectations. We report the average charge and light yields of ER events in liquid xenon at 180 and 105 V/cm and compare the results to the NEST model. We also measure the mean charge recombination fraction and its fluctuations, and we investigate the location and width of the LUX ER band. These results provide input to a reanalysis of the LUX run 3 weakly interacting massive particle search.


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2009

Characterization of large area APDs for the EXO-200 detector

R. Neilson; F. LePort; A. Pocar; K.S. Kumar; A. Odian; C.Y. Prescott; V. Tenev; Nicole Ackerman; D. Akimov; M. Auger; C. Benitez-Medina; M. Breidenbach; A. Burenkov; R. Conley; S. Cook; R. DeVoe; M. J. Dolinski; W. Fairbank; J. Farine; P. Fierlinger; B. Flatt; R. Gornea; G. Gratta; M. P. Green; C. Hall; K. Hall; D. Hallman; C. Hargrove; S. Herrin; J. Hodgson

EXO-200 uses 468 large area avalanche photodiodes (LAAPDs) for detection of scintillation light in an ultra-lowbackground liquid xenon (LXe) detector. We describe initial measurements of dark noise, gain and response to xenon scintillation light of LAAPDs at temperatures from room temperature to 169 K—the temperature of liquid xenon. We also describe the individual characterization of more than 800 LAAPDs for selective installation in the EXO-200 detector.

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D. S. Akerib

Case Western Reserve University

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E. Bernard

Lawrence Livermore National Laboratory

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W. Fairbank

Colorado State University

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A. Bernstein

Lawrence Livermore National Laboratory

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X. Bai

South Dakota School of Mines and Technology

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