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Dive into the research topics where P. M. Border is active.

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Featured researches published by P. M. Border.


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.


Physical Review D | 2003

Measurement of the L/E distributions of atmospheric neutrinos in Soudan 2 and their interpretation as neutrino oscillations

Manuel Calderon De La Barca Sanchez; W. W. M. Allison; G. J. Alner; D. S. Ayres; W. L. Barrett; P. M. Border; J. H. Cobb; D. J. A. Cockerill; H. Courant; D. M. Demuth; T. Fields; H. R. Gallagher; M. C. Goodman; T. Joffe-Minor; T. Kafka; S. M. S. Kasahara; P. J. Litchfield; W. A. Mann; M. L. Marshak; R. H. Milburn; W. H. Miller; L. Mualem; J. K. Nelson; A. Napier; W. P. Oliver; G. F. Pearce; E. A. Peterson; D. Petyt; K. Ruddick; J. Schneps

The effects of oscillations of atmospheric muon neutrinos are observed in the 5.90 fiducial kiloton-year exposure of the Soudan 2 detector. An unbinned maximum likelihood analysis of the neutrino L/E distribution has been carried out using the Feldman-Cousins prescription. The probability of the no oscillation hypothesis is 5.8x10-4. The 90% confidence allowed region in the sin**(2theta), Delta m**2 plane is presented.


Physical Review D | 2005

Neutrino oscillation effects in Soudan-2 upward-stopping muons

W. W. M. Allison; G. J. Alner; D. S. Ayres; G. Barr; W. L. Barrett; P. M. Border; J. H. Cobb; D. J. A. Cockerill; H. Courant; D. M. Demuth; T. Fields; H. R. Gallagher; M. C. Goodman; T. Kafka; S. M S Kasahara; P. J. Litchfield; W. A. Mann; M. L. Marshak; W. H. Miller; L. Mualem; J. K. Nelson; A. Napier; W. P. Oliver; G. F. Pearce; E. A. Peterson; D. Petyt; K. Ruddick; Manuel Calderon De La Barca Sanchez; J. Schneps; A. Sousa

Upward-going stopping muons initiated by atmospheric {nu}{sub {mu}} and {nu}{sub {mu}} interactions in the rock below the Soudan 2 detector have been isolated, together with a companion sample of neutrino-induced single muons, created within the detector, which travel downwards and exit. The downward-going sample is consistent with the atmospheric-neutrino flux prediction, but the upward-going sample exhibits a sizable depletion. Both are consistent with previously reported Soudan 2 neutrino-oscillation results. Inclusion of the two samples in an all-event likelihood analysis, using recent 3D-atmospheric-neutrino-flux calculations, reduces both the allowed oscillation parameter region and the probability of the no-oscillation hypothesis.


Physical Review D | 2002

Search for neutron anti-neutron oscillations using multiprong events in Soudan 2

J. Chung; J. L. Thron; A. Sousa; B. Speakman; W. P. Oliver; W. W. M. Allison; A. Napier; R. H. Milburn; P. M. Border; W. H. Miller; T. Joffe-Minor; G. J. Alner; H. R. Gallagher; J. Schneps; R. Gran; P. J. Litchfield; D. Petyt; M. L. Marshak; D. S. Ayres; W. L. Barrett; D. M. Demuth; N. West; W. A. Mann; M. C. Goodman; Manuel Calderon De La Barca Sanchez; L. Mualem; K. Ruddick; E. A. Peterson; S. M. S. Kasahara; J. H. Cobb

We have searched for neutron-antineutron oscillations using the 5.56 fiducial kiloton-year exposure of the Soudan 2 iron tracking calorimeter. We require candidate n-nbar occurrences to have .GE. 4 prongs (tracks and showers) and to have kinematics compatible with nbar-N annihilation within a nucleus. We observe five candidate events, with an estimated background from atmospheric neutrino and cosmic ray induced events of 4.5 \pm 1.2 events. Previous experiments with smaller exposures observed no candidates, with estimated background rates similar to this experiment. We set a lifetime lower limit for oscillation time in iron: T_A(Fe) > 7.2x10^{31} years. The corresponding lower limit for oscillation of free neutrons is \tau_{n-nbar} > 1.3x10^8 seconds.


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 1996

The SOUDAN 2 detector: The design and construction of the tracking calorimeter modules

W. W. M. Allison; G. J. Alner; I. Ambats; D. S. Ayres; L. J. Balka; G. Barr; W. L. Barrett; Douglas Benjamin; C. Bode; P. M. Border; C.B. Brooks; J. H. Cobb; D. J. A. Cockerill; K. Coover; R. Cotton; H. Courant; B. Dahlin; U. DasGupta; J. Dawson; D. M. Demuth; V.W. Edwards; B. Ewen; T. Fields; C. Garcia-Garcia; H.M. Gallagher; R.H. Giles; G.L. Giller; M. C. Goodman; R.N. Gray; S. Heppelmann

SOUDAN 2 is a 960-ton tracking calorimeter which has been constructed to search for nucleon decay and other phenomena. The full detector consists of 224 calorimeter modules each weighing 4.3 tons. The design and construction of the modules are described. The modules consist of finely segmented iron instrumented with 1 m long drift tubes of 15 mm internal diameter. The tubes enable three spatial coordinates and dE/dx to be recorded for charged particles traversing the tubes.


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2001

A large liquid scintillator detector for a long baseline neutrino oscillation experiment

P. M. Border; P. Cushman; K. Heller; D. Maxam; J. K. Nelson; K. Ruddick; R. Rusack; R. Schwienhorst; T Berg; Thomas R. Chase; M Hansen; C. Bower; R Hatcher; R. Heinz; L Miller; S. Mufson

Abstract We present the concept and design of a liquid scintillator detector for a long-baseline neutrino oscillation experiment. Neutrinos interact in 2.5 cm thick steel plates alternating with 2.0 cm thick planes of liquid scintillator. The scintillator is contained in multicell PVC extrusions containing individual 2 cm×3 cm cells up to 8 m long. Readout of the scintillation light is via wavelength-shifting fibers which transport light to pixellated photodetectors at one end of the cells.


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2001

A comprehensive characterization of Hamamatsu 16- and 64-anode PMTs

K. Lang; J. Day; S. Eilerts; S. Fuqua; M. Kordosky; P. Vahle; P.J. Dervan; R. Saakyan; J. Thomas; M. A. Barker; P. S. Miyagawa; A. De Santo; A. Weber; G. Tzanakos; H. Kim; D. Michael; M. Ignatenko; V. Makeev; A. Para; R. Lee; C. Bower; S. Mufson; P. M. Border; P. Cushman; K. Ruddick; R. Schwienhorst; P. Adamson; P. Harris; R. Webb; W. P. Oliver

We are reporting preliminary results of studies of R59000-00-M16 and M64 tubes, manufactured by Hamamatsu Photonics, to be employed by the MINOS neutrino experiment. Our tests focused on anode response uniformity, gain, cross-talk, and linearity for light illuminating PMTs through a 1.2 mm diameter fiber.


Physics Letters B | 1991

The observation of underground muons from the direction of Cygnus X-3 during the January 1991 radio flare

M. Thomson; J. H. Cobb; W. W. M. Allison; G. J. Alner; I. Ambats; D. S. Ayres; L. J. Balka; G. Barr; W. L. Barrett; Douglas Benjamin; P. M. Border; C.B. Brooks; D. J. A. Cockerill; H. Courant; J. Dawson; V.W. Edwards; B. Ewen; T. Fields; C. Garcia-Garcia; R.H. Giles; G.L. Giller; M. C. Goodman; R.N. Gray; S. Heppelmann; N. Hill; J.H. Hoftiezer; D.J. Jankowski; K. Johns; T. Joyce; T. Kafka

Abstract Muons recorded in the Soudan 2 underground nucleon decay detector from January 1989 to February 1991 have been examined for any correlation with the radio flares of Cygnus X-3 observed during this period. On two nearby days during the radio flare of January 1991 a total of 32 muons within 2.0° of the Cygnus X-3 direction were observed when 11.4 were expected.


Physical Review D | 2000

Observation of a shadow of the Moon in the underground muon flux in the Soudan 2 detector

J. H. Cobb; M. L. Marshak; W. W. M. Allison; G. J. Alner; D. S. Ayres; W. L. Barrett; C. Bode; P. M. Border; C. B. Brooks; R. Cotton; H. Courant; 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; N. P. Longley; W. A. Mann; R. H. Milburn; W. H. Miller; C. Moon; L. Mualem; A. Napier; W. P. Oliver; G. F. Pearce

A shadow of the moon, with a statistical significance of 5 sigma, has been observed in the underground muon flux at a depth of 2090 mwe using the Soudan 2 detector. The angular resolution of the detector is well described by a Gaussian with a sigma of less than 0.3 degrees. The position of the shadow confirms that the alignment of the detector is known to better than 0.15 degrees and has remained stable during ten years of data taking.

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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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G. J. Alner

Rutherford Appleton Laboratory

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W. L. Barrett

University of Cincinnati

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H. Courant

University of Minnesota

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C. Garcia-Garcia

Rutherford Appleton Laboratory

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