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Dive into the research topics where Richard J. Creswick is active.

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Featured researches published by Richard J. Creswick.


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2004

CUORE: a cryogenic underground observatory for rare events

C. Arnaboldi; Frank T. Avignone; Jeffrey W. Beeman; M. Barucci; M. Balata; Chiara Brofferio; C. Bucci; S. Cebrián; Richard J. Creswick; S. Capelli; L. Carbone; O. Cremonesi; A. de Ward; E. Fiorini; Horacio A. Farach; G. Frossati; A. Giuliani; D. Giugni; P. Gorla; E. E. Haller; I.G. Irastorza; R. J. McDonald; A. Morales; Eric B. Norman; P. Negri; Angelo Nucciotti; M. Pedretti; C. Pobes; V. Palmieri; Maura Pavan

CUORE is a proposed tightly packed array of 1000 TeO2 bolometers, each being a cube 5cm on a side with a mass of 760g. The array consists of 25 vertical towers, arranged in a square of 5 towers×5 towers, each containing 10 layers of four crystals. The design of the detector is optimized for ultralow-background searches: for neutrinoless double-beta decay of 130Te (33.8% abundance), cold dark matter, solar axions, and rare nuclear decays. A preliminary experiment involving 20 crystals 3×3×6cm3 of 340g has been completed, and a single CUORE tower is being constructed as a smaller-scale experiment called CUORICINO. The expected performance and sensitivity, based on Monte Carlo simulations and extrapolations of present results, are reported.


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 1999

A decommissioned LHC model magnet as an axion telescope

K. Zioutas; C.E. Aalseth; D. Abriola; Frank T. Avignone; R. L. Brodzinski; J. I. Collar; Richard J. Creswick; D. E. Di Gregorio; Horacio A. Farach; A. O. Gattone; C.K. Guerard; F. Hasenbalg; M. Hasinoff; H. Huck; A. Liolios; Harry S. Miley; A. Morales; J. Morales; D. Nikas; Shmuel Nussinov; A. Ortiz; E. Savvidis; S. Scopel; Peter Sievers; J.A. Villar; L. Walckiers

The 8.4 T, 10 m long transverse magnetic field of a twin aperture LHC bending magnet can be utilized as a macroscopic coherent solar axion-to-photon converter. Numerical calculations show that the integrated time of alignment with the Sun would be 33 days/yr with the magnet on a tracking table capable of


Physical Review Letters | 1998

Experimental Search for Solar Axions via Coherent Primakoff Conversion in a Germanium Spectrometer

Frank T. Avignone; D. Abriola; R.L. Brodzinski; J. I. Collar; Richard J. Creswick; D.E. DiGregorio; Horacio A. Farach; A. O. Gattone; C.K. Guerard; F. Hasenbalg; H. Huck; Harry S. Miley; A. Morales; J. Morales; Shmuel Nussinov; A. Ortiz de Solórzano; J.H. Reeves; J.A. Villar; K. Zioutas

5i in the vertical direction and


Astroparticle Physics | 2003

Physics potential and prospects for the CUORICINO and CUORE experiments

C. Arnaboldi; Frank T. Avignone; Jeffrey W. Beeman; M. Barucci; M. Balata; Chiara Brofferio; C. Bucci; S. Cebrián; Richard J. Creswick; S. Capelli; L. Carbone; O. Cremonesi; A. de Ward; E. Fiorini; Horacio A. Farach; G. Frossati; A. Giuliani; P. Gorla; E. E. Haller; I.G. Irastorza; R. J. McDonald; A. Morales; Eric B. Norman; Angelo Nucciotti; M. Pedretti; C. Pobes; V. Palmieri; Maura Pavan; G. Pessina; S. Pirro

40i in the horizontal direction. The existing lower bound on the axion-to-photon coupling constant can be improved by a factor between 30 and 100 in 3 yr, i.e., g !cc [9]10~11 GeV~1 for axion masses [ 1 eV. This value falls within the existing open axion mass window. The same set-up can simultaneously search for low- and high-energy celestial axions, or axion-like particles, scanning the sky as the Earth rotates and orbits the Sun. ( 1999 Elsevier Science B.V. All rights reserved.


Physics Letters B | 1998

Theory for the direct detection of solar axions by coherent Primakoff conversion in germanium detectors

Richard J. Creswick; F. T. Avignone; Horacio A. Farach; J. I. Collar; A.O. Gattone; Shmuel Nussinov; K. Zioutas

Results are reported of an experimental search for the unique, rapidly varying temporal pattern of solar axions coherently converting into photons via the Primakoff effect in a single crystal germanium detector when axions are incident at a Bragg angle with a crystalline plane. The analysis of 1.94thinspthinspkgthinspyr of data from the 1thinspthinspkg DEMOS detector in Sierra Grande, Argentina, yields a new laboratory bound by an axion-photon coupling of g{sub a{gamma}{gamma}}{lt}2.7{times}10{sup {minus}9} GeV{sup {minus}1} , independent of axion mass up to {approximately}1 keV . {copyright} {ital 1998} {ital The American Physical Society }


Physical Review Letters | 1998

YANG-LEE ZEROS OF THE Q-STATE POTTS MODEL IN THE COMPLEX MAGNETIC FIELD PLANE

Seung-Yeon Kim; Richard J. Creswick

Abstract The Cryogenic Underground Observatory for Rare Events (CUORE) experiment projects to construct and operate an array of 1000 cryogenic thermal detectors of TeO 2 , of a mass of 760 g each, to investigate rare events physics, in particular, double beta decay and non-baryonic particle dark matter. A first step towards CUORE is CUORICINO, an array of 62 bolometers, currently being installed in the Gran Sasso Laboratory. In this paper we report the physics potential of both stages of the experiment regarding neutrinoless double beta decay of 130 Te, WIMP searches and solar axions.The CUORE experiment projects to construct and operate an array of 1000 cryogenic thermal detectors of TeO2, of a mass of 760 g each, to investigate rare events physics, in particular, double beta decay and non baryonic particle dark matter. A first step towards CUORE is CUORICINO, an array of 62 bolometers, currently being installed in the Gran Sasso Laboratory. In this paper we report the physics potential of both stages of the experiment regarding neutrinoless double beta decay of 130Te, WIMP searches and solar axions.


arXiv: Nuclear Experiment | 2006

The Majorana Project

S. R. Elliott; M. Akashi-Ronquest; Mark Amman; J. F. Amsbaugh; Frank T. Avignone; H. O. Back; C. Baktash; A. S. Barabash; P.S. Barbeau; J. R. Beene; M. Bergevin; F. E. Bertrand; M. Boswell; V. Brudanin; W. Bugg; T. H. Burritt; Y.D. Chan; T.V. Cianciolo; J. I. Collar; Richard J. Creswick; M. Cromaz; J. A. Detwiler; P. J. Doe; J. A. Dunmore; Yu. Efremenko; V. Egorov; H. Ejiri; James H. Ely; J. Esterline; Horacio A. Farach

Abstract It is assumed that axion-like Nambu Goldstone bosons exist and are created in the sun by Primakoff conversion of photons in the Coulomb fields of nuclei. Detection rates are calculated in germanium detectors due to the coherent conversion of axions to photons in the lattice when the incident angle fulfills the Bragg condition for a given crystalline plane. The rates are correlated with the relative positions of the sun and detector yielding a definite recognizable sub-diurnal temporal pattern. A major experiment is proposed based on a large detector array.


arXiv: Nuclear Experiment | 2009

The MAJORANA DEMONSTRATOR: An R&D project towards a tonne-scale germanium neutrinoless double-beta decay search

Mark Amman; J. F. Amsbaugh; Frank T. Avignone; H. O. Back; A. S. Barabash; P.S. Barbeau; James R. Beene; M. Bergevin; F. E. Bertrand; M. Boswell; V. Brudanin; W. Bugg; T. H. Burritt; Y.D. Chan; J. I. Collar; R. J. Cooper; Richard J. Creswick; J. A. Detwiler; P. J. Doe; Yu. Efremenko; V. Egorov; H. Ejiri; S. R. Elliott; James H. Ely; J. Esterline; Horacio A. Farach; J. E. Fast; N. Fields; P. Finnerty; B. K. Fujikawa

The microcanonical transfer matrix is used to study the distribution of Yang-Lee zeros of the


Physics Letters B | 2009

Can large scintillators be used for solar-axion searches to test the cosmological axion–photon oscillation proposal?

F. T. Avignone; Richard J. Creswick; S. Nussinov

Q


Nuclear Physics B - Proceedings Supplements | 1999

Solar Axion Experiments Using Coherent Primakoff Conversion in Single Crystals

F. T. Avignone; D. Abriola; R. L. Brodzinski; J. I. Collar; Richard J. Creswick; D.E. DiGregorio; Horacio A. Farach; A. O. Gattone; C.K. Guerard; F. Hasenbalg; H. Huck; Harry S. Miley; A. Morales; J. Morales; Shmuel Nussinov; A. Ortiz de Solórzano; J.H. Reeves; J.A. Villar; K. Zioutas

-state Potts model in the complex magnetic-field (

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Horacio A. Farach

University of South Carolina

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Charles P. Poole

University of South Carolina

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Frank T. Avignone

University of South Carolina

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S. Cebrián

University of Zaragoza

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A. Morales

University of Zaragoza

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Jeffrey W. Beeman

Lawrence Berkeley National Laboratory

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M. Balata

Lawrence Livermore National Laboratory

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