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Dive into the research topics where D. Wall is active.

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Featured researches published by D. Wall.


Physics Letters B | 1999

The Atmospheric Neutrino Flavor Ratio from a 3.9 Fiducial Kiloton-Year Exposure of Soudan 2

W. W. M. Allison; G. J. Alner; D. S. Ayres; G. Barr; W. L. Barrett; C. Bode; P. M. Border; C.B. Brooks; J. H. Cobb; R. Cotton; H. Courant; D. M. Demuth; T. Fields; Hugh R. Gallagher; C. Garcia-Garcia; M. C. Goodman; R. Gran; T. Joffe–Minor; T. Kafka; S. M S Kasahara; W. Leeson; P. J. Litchfield; N. P. Longley; W. A. Mann; M. L. Marshak; R. H. Milburn; W. H. Miller; L. Mualem; A. Napier; W. P. Oliver

Abstract We report a measurement of the atmospheric neutrino flavor ratio, R, using a sample of quasi-elastic neutrino interactions occurring in an iron medium. The flavor ratio (tracks/showers) of atmospheric neutrinos in a 3.9 fiducial kiloton-year exposure of Soudan 2 is 0.64±0.11(stat.)±0.06(syst.) of that expected. Important aspects of our main analysis have been checked by carrying out two independent, alternative analyses; one is based upon automated scanning, the other uses a multivariate approach for background subtraction. Similar results are found by all three approaches.


Physics Letters B | 1997

Measurement of the atmospheric neutrino flavour composition in Soudan 2

W. W. M. Allison; G. J. Alner; D. S. Ayres; W. L. Barrett; C. Bode; P. M. Border; C.B. Brooks; J. H. Cobb; D. J. A. Cockerill; R. Cotton; H. Courant; D. M. Demuth; T. Fields; Hugh R. Gallagher; C. Garcia-Garcia; M. C. Goodman; R.N. Gray; K. Johns; T. Kafka; S. M S Kasahara; W. Leeson; P. J. Litchfield; N. P. Longley; M. Lowe; W. A. Mann; M. L. Marshak; Edward May; R. H. Milburn; W. H. Miller; L. Mualem

Abstract The atmospheric neutrino flavour ratio measured using a 1.52 kton-year exposure of Soudan 2 is found to be 0.72 ± 0.19−0.07+0.05 relative to the expected value from a Monte Carlo calculation. The possible background of interactions of neutrons and photons produced in muon interactions in the rock surrounding the detector has been investigated and is shown not to produce low values of the ratio.


Physics Letters B | 1998

Search for the proton decay mode p → ν K+ in Soudan 2

W. W. M. Allison; G. J. Alner; D. S. Ayres; G. Barr; W. L. Barrett; C. Bode; P. M. Border; C.B. Brooks; J. H. Cobb; R. Cotton; H. Courant; D. M. Demuth; T. Fields; Hugh R. Gallagher; C. Garcia-Garcia; M. C. Goodman; R. Gran; T. Joffe-Minor; T. Kafka; S. M S Kasahara; W. Leeson; P. J. Litchfield; N. P. Longley; W. A. Mann; M. L. Marshak; R. H. Milburn; W. H. Miller; L. Mualem; A. Napier; W. P. Oliver

We have searched for the proton decay mode p {yields} {nu} K{sup +} using the one-kiloton Soudan 2 high resolution calorimeter. Contained events obtained from a 3.56 kiloton-year fiducial exposure through June 1997 are examined for occurrence of a visible K{sup +} track which decays at rest into {mu}{sup +}{nu} or {pi}{sup +}{pi}{sup 0}. We found one candidate event consistent with background, yielding a limit, {tau}/B(p {yields} {nu} K{sup +})>4.3x10{sup 31} years at 90% CL with no background subtraction.We have searched for the proton decay mode proton to neutrino K+ using the one-kiloton Soudan 2 high resolution calorimeter. Contained events obtained from a 3.56 kiloton-year fiducial exposure through June 1997 are examined for occurrence of a visible K+ track which decays at rest into mu+ nu or pi+ pi0. We found one candidate event consistent with background, yielding a limit, tau/B>4.3 10^{31} years at 90% CL with no background subtraction.


Physical Review D | 2000

Search for nucleon decay with final states l+η0, ν̄η0, and ν̄π+,0 using Soudan 2

D. Wall; W. W. M. Allison; G. J. Alner; D. S. Ayres; W. L. Barrett; C. Bode; P. M. Border; J. H. Cobb; R. Cotton; H. Courant; J.-M. Chung; D. M. Demuth; T. Fields; Hugh R. Gallagher; M. C. Goodman; R. Gran; T. Joffe-Minor; T. Kafka; S. M. S. Kasahara; W. Leeson; P. J. Litchfield; W. A. Mann; M. L. Marshak; R. H. Milburn; W. H. Miller; L. Mualem; A. Napier; W. P. Oliver; G. F. Pearce; E. A. Peterson

We have searched for nucleon decay into five two-body final states using a 4.4 kiloton-year fiducial exposure of the Soudan 2 iron tracking calorimeter. For proton decay into the fully visible final states mu+ eta and e+ eta, we observe zero and one event, respectively, that satisfy our search criteria for nucleon decay. The lifetime lower limits (tau/B) thus implied are 89 x 10^30 years and 81 x 10^30 years at 90% confidence level. For neutron decay into nubar eta, we obtain the lifetime lower limit 71 x 10^30 years. Limits are also reported for neutron decay into nubar pi0, and for proton decay into nubar pi+.


Physics Letters B | 1998

Search for the proton decay mode p→νK+ in Soudan 2

W. W. M. Allison; G. J. Alner; D. S. Ayres; G. Barr; W. L. Barrett; C. Bode; P. M. Border; C.B. Brooks; J. H. Cobb; R. Cotton; H. Courant; D. M. Demuth; T. Fields; Hugh R. Gallagher; C. Garcia-Garcia; M. C. Goodman; R. Gran; T. Joffe–Minor; T. Kafka; S. M S Kasahara; W. Leeson; P. J. Litchfield; N. P. Longley; W. A. Mann; M. L. Marshak; R. H. Milburn; W. H. Miller; L. Mualem; A. Napier; W. P. Oliver

We have searched for the proton decay mode p {yields} {nu} K{sup +} using the one-kiloton Soudan 2 high resolution calorimeter. Contained events obtained from a 3.56 kiloton-year fiducial exposure through June 1997 are examined for occurrence of a visible K{sup +} track which decays at rest into {mu}{sup +}{nu} or {pi}{sup +}{pi}{sup 0}. We found one candidate event consistent with background, yielding a limit, {tau}/B(p {yields} {nu} K{sup +})>4.3x10{sup 31} years at 90% CL with no background subtraction.We have searched for the proton decay mode proton to neutrino K+ using the one-kiloton Soudan 2 high resolution calorimeter. Contained events obtained from a 3.56 kiloton-year fiducial exposure through June 1997 are examined for occurrence of a visible K+ track which decays at rest into mu+ nu or pi+ pi0. We found one candidate event consistent with background, yielding a limit, tau/B>4.3 10^{31} years at 90% CL with no background subtraction.


Physical Review D | 2000

Search for nucleon decay into lepton + K0 final states using Soudan-2

D. Wall; W. W. M. Allison; G. J. Alner; D. S. Ayres; W. L. Barrett; C. Bode; P. M. Border; C.B. Brooks; J. H. Cobb; R. Cotton; H. Courant; D. M. Demuth; T. Fields; Hugh R. Gallagher; C. Garcia-Garcia; M. C. Goodman; R. Gran; T. Joffe-Minor; T. Kafka; S. M. S. Kasahara; W. Leeson; P. J. Litchfield; N. P. Longley; W. A. Mann; M. L. Marshak; R. H. Milburn; W. H. Miller; L. Mualem; A. Napier; W. P. Oliver


Physics Letters B | 1998

Search for the Proton Decay Mode proton to neutrino K+ in Soudan 2

G. J. Alner; D. S. Ayres; G. Barr; W. L. Barrett; C. Bode; C.B. Brooks; J. H. Cobb; R. Cotton; H. Courant; D. M. Demuth; T. Fields; Hugh R. Gallagher; C. Garcia-Garcia; M. C. Goodman; R. Gran; T. Joffe-Minor; T. Kafka; S. M S Kasahara; W. Leeson; P. J. Litchfield; Nathaniel Peter Longley; W. A. Mann; M. L. Marshak; R. H. Milburn; William H. Miller; L. Mualem; A. Napier; W. P. Oliver; G. F. Pearce; E. A. Peterson


Physical Review D | 2000

Search for nucleon decay with final states â+η{sup o}, {ovr nu}η{sup o}, and {ovr nu}Ï{sup =,o} using Soudan 2.

D. Wall; W. W. M. Allison; G. J. Alner; D. S. Ayres; W. L. Barrett; T. Fields; M. C. Goodman; T. Joffe-Minor; W. Leeson; L. E. Price; R. Seidlein; Jonathan L. Thron


Physical Review D | 2000

Search for nucleon decay with final states l+eta0, nueta0, and nupi+,0 using Soudan 2

D. Wall; W. W. M. Allison; G. J. Alner; D. S. Ayres; W. L. Barrett; C. Bode; Peter Macdonald Border; J. H. Cobb; R. Cotton; H. Courant; J.-M. Chung; D. M. Demuth; T. Fields; Hugh R. Gallagher; M. C. Goodman; R. Gran; T. Joffe-Minor; T. Kafka; S. M. S. Kasahara; W. Leeson; P. J. Litchfield; W. A. Mann; M. L. Marshak; R. H. Milburn; William H. Miller; L. Mualem; A. Napier; W. P. Oliver; G. F. Pearce; E. A. Peterson


Physics Letters B | 1998

Search for the proton decay mode in Soudan 2

W. W. M. Allison; G. J. Alner; D. S. Ayres; G. Barr; W. L. Barrett; C. Bode; P. M. Border; C.B. Brooks; J. H. Cobb; R. Cotton; H. Courant; D. M. Demuth; T. Fields; Hugh R. Gallagher; C. Garcia-Garcia; M. C. Goodman; R. Gran; T. Joffe–Minor; T. Kafka; S. M S Kasahara; W. Leeson; P. J. Litchfield; N. P. Longley; W. A. Mann; M. L. Marshak; R. H. Milburn; W. H. Miller; L. Mualem; A. Napier; W. P. Oliver

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G. J. Alner

Rutherford Appleton Laboratory

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D. S. Ayres

Argonne National Laboratory

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M. C. Goodman

Argonne National Laboratory

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T. Fields

Argonne National Laboratory

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W. L. Barrett

University of Cincinnati

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W. Leeson

Argonne National Laboratory

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P. J. Litchfield

Rutherford Appleton Laboratory

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R. Cotton

Rutherford Appleton Laboratory

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