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The first phase of the long-baseline neutrino experiment, LBNE10, will use a broadband, high-energy neutrino beam with a 10-kt liquid argon TPC at 1300 km to study neutrino oscillation. In this paper, we describe potential upgrades to…

High Energy Physics - Experiment · Physics 2013-07-04 M. Bishai , M. Diwan , S. Kettell , J. Stewart , R. Tschirhart , B. Viren , L. Whitehead , E. Worcester

The SuperNEMO project studies the feasibility of employing a technique of tracking plus calorimetry to search for neutrinoless double beta decay in 100 kg of enriched isotopes. It aims to reach an effective neutrino mass sensitivity of 50…

Instrumentation and Detectors · Physics 2019-08-13 Irina Nasteva

Large calorimetric neutrino mass experiments using thermal detectors are possibly going to play a crucial role in the challenge for assessing the neutrino mass. This paper describe a tool based on Monte Carlo methods which has been…

Instrumentation and Detectors · Physics 2014-12-18 A. Nucciotti

Despite the dramatic progress made in neutrino oscillation studies recently, several fundamental neutrino parameters remain either unknown or poorly measured. We discuss in detail a method for their measurement by precision studies of…

High Energy Physics - Phenomenology · Physics 2008-11-08 Mikhail Batygov , Stephen Dye , John Learned , Shigenobu Matsuno , Sandip Pakvasa , Gary Varner

The abBA collaboration proposes to conduct a comprehensive program of precise measurements of neutron $\beta$-decay coefficients $a$ (the correlation between the neutrino momentum and the decay electron momentum), $b$ (the electron energy…

High Energy Physics - Experiment · Physics 2007-05-23 E. Frlez

The KATRIN experiment will probe the neutrino mass by measuring the beta-electron energy spectrum near the endpoint of tritium beta-decay. An integral energy analysis will be performed by an electro-static spectrometer (Main Spectrometer),…

Instrumentation and Detectors · Physics 2016-05-04 M. Arenz , M. Babutzka , M. Bahr , J. P. Barrett , S. Bauer , M. Beck , A. Beglarian , J. Behrens , T. Bergmann , U. Besserer , J. Blümer , L. I. Bodine , K. Bokeloh , J. Bonn , B. Bornschein , L. Bornschein , S. Büsch , T. H. Burritt , S. Chilingaryan , T. J. Corona , L. De Viveiros , P. J. Doe , O. Dragoun , G. Drexlin , S. Dyba , S. Ebenhöch , K. Eitel , E. Ellinger , S. Enomoto , M. Erhard , D. Eversheim , M. Fedkevych , A. Felden , S. Fischer , J. A. Formaggio , F. Fränkle , D. Furse , M. Ghilea , W. Gil , F. Glück , A. Gonzalez Urena , S. Görhardt , S. Groh , S. Grohmann , R. Grössle , R. Gumbsheimer , M. Hackenjos , V. Hannen , F. Harms , N. Hauÿmann , F. Heizmann , K. Helbing , W. Herz , S. Hickford , D. Hilk , B. Hillen , T. Höhn , B. Holzapfel , M. Hötzel , M. A. Howe , A. Huber , A. Jansen , N. Kernert , L. Kippenbrock , M. Kleesiek , M. Klein , A. Kopmann , A. Kosmider , A. Kovalík , B. Krasch , M. Kraus , H. Krause , M. Krause , L. Kuckert , B. Kuffner , L. La Cascio , O. Lebeda , B. Leiber , J. Letnev , V. M. Lobashev , A. Lokhov , E. Malcherek , M. Mark , E. L. Martin , S. Mertens , S. Mirz , B. Monreal , K. Müller , M. Neuberger , H. Neumann , S. Niemes , M. Noe , N. S. Oblath , A. Off , H. -W. Ortjohann , A. Osipowicz , E. Otten , D. S. Parno , P. Plischke , A. W. P. Poon , M. Prall , F. Priester , P. C. -O. Ranitzsch , J. Reich , O. Rest , R. G. H. Robertson , M. Röllig , S. Rosendahl , S. Rupp , M. Rysavy , K. Schlösser , M. Schlösser , K. Schönung , M. Schrank , J. Schwarz , W. Seiler , H. Seitz-Moskaliuk , J. Sentkerestiova , A. Skasyrskaya , M. Slezak , A. Spalek , M. Steidl , N. Steinbrink , M. Sturm , M. Suesser , H. H. Telle , T. Thümmler , N. Titov , I. Tkachev , N. Trost , A. Unru , K. Valerius , D. Venos , R. Vianden , S. Vöcking , B. L. Wall , N. Wandkowsky , M. Weber , C. Weinheimer , C. Weiss , S. Welte , J. Wendel , K. L. Wierman , J. F. Wilkerson , D. Winzen , J. Wolf , S. Wüstling , M. Zacher , S. Zadoroghny , M. Zboril

The aCORN experiment uses a novel asymmetry method to measure the electron-antineutrino correlation (a-coefficient) in free neutron decay that does not require precision proton spectroscopy. aCORN completed two physics runs at the NIST…

The KArlsruhe TRItium Neutrino (KATRIN) experiment aims at a measurement of the neutrino mass with a 90 % confidence limit (C.L.) sensitivity of 0.2 eV/c$^2$ by measuring the endpoint region of the tritium $\beta$ decay spectrum from a…

Instrumentation and Detectors · Physics 2013-11-21 Nicholas Steinbrink , Volker Hannen , Eric L. Martin , R. G. Hamish Robertson , Michael Zacher , Christian Weinheimer

Spectroscopic studies of two beta-rays from 100Mo are shown to be of potential interest for investigating both the Majorana neutrino mass by neutrinoless double beta-decay and low energy solar neutrino's by inverse beta-decay. With a…

Nuclear Experiment · Physics 2009-10-31 H. Ejiri , J. Engel , R. Hazama , P. Krastev , N. Kudomi , R. G. H. Robertson

The KATRIN (Karlsruhe Tritium Neutrino) experiment investigates the energetic endpoint of the tritium beta-decay spectrum to determine the effective mass of the electron anti-neutrino. The collaboration has reported a first mass measurement…

In the presence of mixing between massive neutrino states, the distortion of the electron spectrum in beta decay is, in general, a function of several masses and mixing angles. For $3\nu$-schemes which describe the solar and atmospheric…

High Energy Physics - Phenomenology · Physics 2009-11-07 Y. Farzan , A. Yu. Smirnov

An electron antineutrino mass has been measured in tritium beta-decay in the "Troitsk nu-mass" experiment. The setup consists of a windowless gaseous tritium source and an electrostatic electron spectrometer. The whole data set acquired…

The KATRIN experiment is designed to determine the absolute neutrino mass scale with a sensitivity of 200 meV (90 % CL) by measuring the electron energy spectrum close to the endpoint of molecular tritium beta decay. Electrons from a…

Instrumentation and Detectors · Physics 2013-04-25 Ferenc Glück , Guido Drexlin , Benjamin Leiber , Susanne Mertens , Alexander Osipowicz , Jan Reich , Nancy Wandkowsky

The possibility to access the absolute neutrino mass scale through the measurement of the wrong helicity contribution of charged leptons is investigated in pion decay. Through this method, one may have access to the same effective mass…

High Energy Physics - Phenomenology · Physics 2009-02-16 C. C. Nishi

The observation of neutrino oscillations has proven that neutrinos have mass. This is direct evidence of physics beyond the Standard Model. This discovery has renewed interest in neutrinoless double beta decay ($0\nu\beta\beta$) experiments…

High Energy Physics - Experiment · Physics 2008-10-20 R. Benton Pahlka

We analyze the possibility of detection of cosmological relic neutrinos via neutrino capture on beta decaying nuclei. This reaction has no threshold in neutrino energy, which is crucial for searching for relic neutrinos possessing very low…

High Energy Physics - Phenomenology · Physics 2011-02-10 Rastislav Hodak , Sergey Kovalenko , Fedor Simkovic , Amand Faessler

A conceptual experimental method for providing a new measurement of the underlying beta decay spectra from fission products is presented. The goal is to provide additional information related to the prediction of the antineutrino emission…

Nuclear Experiment · Physics 2013-04-16 D. Asner , K. A. Burns , B. Greenfield , M. S. Kos , J. L. Orrell , M. Schram , B. A. VanDevender , D. Wootan

The KArlsruhe TRItium Neutrino experiment (KATRIN) aims to measure the effective electron anti-neutrino mass with an unprecedented sensitivity of $0.2\,\mathrm{eV}/\mathrm{c}^2$, using $\beta$-electrons from tritium decay. The electrons are…

The KATRIN (KArlsruhe TRItium Neutrino) experiment will be analyzing the tritium beta-spectrum to determine the mass of the neutrino with a sensitivity of 0.2 eV (90% C.L.). This approach to a measurement of the absolute value of the…

Nuclear Experiment · Physics 2013-05-29 Anna Sejersen Riis , Steen Hannestad , Christian Weinheimer

Proposed low energy beta beam facilities would be capable of producing intense beams of neutrinos (anti-neutrinos) with well defined spectra. We present analytic expressions and numerical results which accurately show how the total neutrino…

High Energy Physics - Phenomenology · Physics 2008-11-26 Philip S. Amanik , Gail C. McLaughlin