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NSR database version of April 11, 2024.

Search: Author = J.A.Formaggio

Found 16 matches.

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2024AS04      Phys.Rev. C 109, 035503 (2024)

A.Ashtari Esfahani, S.Boser, N.Buzinsky, M.C.Carmona-Benitez, C.Claessens, L.de Viveiros, P.J.Doe, M.Fertl, J.A.Formaggio, J.K.Gaison, L.Gladstone, M.Guigue, J.Hartse, K.M.Heeger, X.Huyan, A.M.Jones, K.Kazkaz, B.H.LaRoque, M.Li, A.Lindman, E.Machado, A.Marsteller, C.Matthe, R.Mohiuddin, B.Monreal, R.Mueller, J.A.Nikkel, E.Novitski, N.S.Oblath, J.I.Pena, W.Pettus, R.Reimann, R.G.H.Robertson, D.Rosa De Jesus, G.Rybka, L.Saldana, M.Schram, P.L.Slocum, J.Stachurska, Y.-H.Sun, P.T.Surukuchi, J.R.Tedeschi, A.B.Telles, F.Thomas, M.Thomas, L.A.Thorne, T.Thummler, L.Tvrznikova, W.Van De Pontseele, B.A.VanDevender, J.Weintroub, T.E.Weiss, T.Wendler, A.Young, E.Zayas, A.Ziegler

Cyclotron radiation emission spectroscopy of electrons from tritium β decay and 83mKr internal conversion

doi: 10.1103/PhysRevC.109.035503
Citations: PlumX Metrics


2021AS07      Phys.Rev. C 103, 065501 (2021)

A.Ashtari Esfahani, M.Betancourt, Z.Bogorad, S.Boser, N.Buzinsky, R.Cervantes, C.Claessens, L.de Viveiros, M.Fertl, J.A.Formaggio, L.Gladstone, M.Grando, M.Guigue, J.Hartse, K.M.Heeger, X.Huyan, J.Johnston, A.M.Jones, K.Kazkaz, B.H.LaRoque, A.Lindman, R.Mohiuddin, B.Monreal, J.A.Nikkel, E.Novitski, N.S.Oblath, M.Ottiger, W.Pettus, R.G.H.Robertson, G.Rybka, L.Saldana, M.Schram, V.Sibille, P.L.Slocum, Y.-H.Sun, P.T.Surukuchi, J.R.Tedeschi, A.B.Telles, M.Thomas, T.Thummler, L.Tvrznikova, B.A.VanDevender, T.E.Weiss, T.Wendler, E.Zayas, A.Ziegler

Bayesian analysis of a future β decay experiment's sensitivity to neutrino mass scale and ordering

RADIOACTIVITY 3H(β-); analyzed sensitivity to the neutrino mass scale and ordering by Bayesian approach for a planned experiment 'Project-8 Collaboration' which aims to measure the neutrino mass to a sensitivity 40 meV by analyzing a spectrum produced in β- decay of atomic tritium through the technique of Cyclotron Radiation Emission Spectroscopy (CRES) for obtaining a high-precision β- spectrum by measuring the cyclotron frequencies of electrons in a magnetic field, followed by a computation of corresponding electron energies.

doi: 10.1103/PhysRevC.103.065501
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2021FO07      Phys.Rep. 914, 1 (2021)

J.A.Formaggio, A.L.C.de Gouvea, R.G.H.Robertson

Direct measurements of neutrino mass

RADIOACTIVITY 48Ca, 76Ge, 82Se, 96Zr, 100Mo, 116Cd, 130Te, 136Xe, 150Nd(2β-); analyzed available data; deduced Majorana neutrino mass limit.

doi: 10.1016/j.physrep.2021.02.002
Citations: PlumX Metrics


2019AK11      Eur.Phys.J. A 55, 176 (2019)

M.Akashi-Ronquest, A.Bacon, C.Benson, K.Bhattacharya, T.Caldwell, J.A.Formaggio, D.Gastler, B.Grado-White, J.Griego, M.Gold, A.Hime, C.M.Jackson, S.Jaditz, C.Kachulis, E.Kearns, J.R.Klein, A.Ledesma, S.Linden, F.Lopez, S.MacMullin, A.Mastbaum, J.Monroe, J.Nikkel, J.Oertel, G.D.Orebi Gann, G.S.Ortega, K.Palladino, K.Rielage, S.Seibert, J.-J.Wang

Triplet lifetime in gaseous argon

doi: 10.1140/epja/i2019-12867-2
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2019KL03      Eur.Phys.J. C 79, 204 (2019)

M.Kleesiek, J.Behrens, G.Drexlin, K.Eitel, M.Erhard, J.A.Formaggio, F.Gluck, S.Groh, M.Hotzel, S.Mertens, A.W.P.Poon, C.Weinheimer, K.Valerius

β-Decay spectrum, response function and statistical model for neutrino mass measurements with the KATRIN experiment

RADIOACTIVITY 3H(β-); analyzed available data; deduced a consistent theoretical description of the β-electron energy spectrum in the endpoint region, an accurate model of the apparatus response function, and the statistical approaches suited to interpret and analyze tritium β-decay data observed with KATRIN with the envisaged precision.

doi: 10.1140/epjc/s10052-019-6686-7
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2017AS02      J.Phys.(London) G44, 054004 (2017)

A.Ashtari Esfahani, D.M.Asner, S.Boser, R.Cervantes, C.Claessens, L.de Viveiros, P.J.Doe, S.Doeleman, J.L.Fernandes, M.Fertl, E.C.Finn, J.A.Formaggio, D.Furse, M.Guigue, K.M.Heeger, A.M.Jones, K.Kazkaz, J.A.Kofron, C.Lamb, B.H.LaRoque, E.Machado, E.L.McBride, M.L.Miller, B.Monreal, P.Mohanmurthy, J.A.Nikkel, N.S.Oblath, W.C.Pettus, R.G.H.Robertson, L.J.Rosenberg, G.Rybka, D.Rysewyk, L.Saldana, P.L.Slocum, M.G.Sternberg, J.R.Tedeschi, T.Thummler, B.A.VanDevender, L.E.Vertatschitsch, M.Wachtendonk, J.Weintroub, N.L.Woods, A.Young and E.M.Zayas

Determining the neutrino mass with cyclotron radiation emission spectroscopy-Project 8

doi: 10.1088/1361-6471/aa5b4f
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2017BI11      J.Phys.(London) G44, 105101 (2017)

J.Billard, R.Carr, J.Dawson, E.Figueroa-Feliciano, J.A.Formaggio, J.Gascon, S.T.Heine, M.De Jesus, J.Johnston, T.Lasserre, A.Leder, K.J .Palladino, V.Sibille, M.Vivier, L.Winslow

Coherent neutrino scattering with low temperature bolometers at Chooz reactor complex

NUCLEAR REACTIONS Ge, Zn(ν-bar, ν-bar'), E<100 MeV; calculated nuclear recoil spectra, potential sensitivity of a future recoil detector for detection of the process of coherent elastic neutrino nucleus scattering.

doi: 10.1088/1361-6471/aa83d0
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2009FO10      Nucl.Phys. A827, 498c (2009)

J.A.Formaggio, and the SNO Collaboration

Measurement of Atmospheric Neutrinos at the Sudbury Neutrino Observatory

doi: 10.1016/j.nuclphysa.2009.05.143
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2009MO42      Phys.Rev. D 80, 051301 (2009)

B.Monreal, J.A.Formaggio

Relativistic cyclotron radiation detection of tritium decay electrons as a new technique for measuring the neutrino mass

RADIOACTIVITY 3H(β-); analyzed available data, Eβ, Iβ; deduced new method for neutrino detection.

doi: 10.1103/PhysRevD.80.051301
Citations: PlumX Metrics


2005NO02      Nucl.Phys. B(Proc.Supp.) S138, 221 (2005)

M.Nomachi, P.Doe, H.Ejiri, S.R.Elliott, J.Engel, M.Finger, J.A.Formaggio, K.Fushimi, V.Gehman, A.Gorin, M.Greenfield, R.Hazama, K.Ichihara, Y.Ikegami, H.Ishii, T.Itahashi, P.Kavitov, V.Kekelidze, K.Kuroda, V.Kutsalo, I.Manouilov, K.Matsuoka, H.Nakamura, T.Ogama, A.Para, K.Rielage, A.Rjazantsev, R.G.H.Robertson, Y.Shichijo, T.Shima, Y.Shimada, G.Shirkov, A.Sissakian, Y.Sugaya, A.Titov, V.Vatulin, O.E.Vilches, V.Voronov, J.F.Wilkerson, D.I.Will, S.Yoshida

MOON (Mo Observatory Of Neutrinos) for double beta decay

doi: 10.1016/j.nuclphysbps.2004.11.053
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2004ST01      Phys.Rev. C 69, 015801 (2004)

L.C.Stonehill, J.A.Formaggio, R.G.H.Robertson

Solar neutrinos from CNO electron capture

NUCLEAR REACTIONS 13N, 15O, 17F(e, ν), E=low; calculated solar neutrino flux from electron capture.

doi: 10.1103/PhysRevC.69.015801
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2002MC09      Nucl.Phys. B(Proc.Supp.) S112, 226 (2002)

K.S.McFarland, G.P.Zeller, T.Adams, A.Alton, S.Avvakumov, L.de Barbaro, P.de Barbaro, R.H.Bernstein, A.Bodek, T.Bolton, J.Brau, D.Buchholz, H.Budd, L.Bugel, J.Conrad, R.B.Drucker, B.T.Fleming, R.Frey, J.A.Formaggio, J.Goldman, M.Goncharov, D.A.Harris, R.A.Johnson, J.H.Kim, S.Koutsoliotas, M.J.Lamm, W.Marsh, D.Mason, J.McDonald, C.McNulty, D.Naples, P.Nienaber, V.Radescu, A.Romosan, W.K.Sakumoto, H.Schellman, M.H.Shaevitz, P.Spentzouris, E.G.Stern, N.Suwonjandee, M.Tzanov, M.Vakili, A.Vaitaitis, U.K.Yang, J.Yu, E.D.Zimmerman

Nuclear Effects and the NuTeV sin2θw Measurement

NUCLEAR REACTIONS Fe(ν, X), (ν-bar, X), E not given; measured ratio of neutral to charged-current σ; deduced electroweak parameter, possible nuclear effects on parton distribution functions. Comparison with model predictions.

doi: 10.1016/S0920-5632(02)01777-2
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2002ZE02      Phys.Rev.Lett. 88, 091802 (2002); Erratum Phys.Rev.Lett. 90, 239902(2003)

G.P.Zeller, K.S.McFarland, T.Adams, A.Alton, S.Avvakumov, L.de Barbaro, P.de Barbaro, R.H.Bernstein, A.Bodek, T.Bolton, J.Brau, D.Buchholz, H.Budd, L.Bugel, J.Conrad, R.B.Drucker, B.T.Fleming, R.Frey, J.A.Formaggio, J.Goldman, M.Goncharov, D.A.Harris, R.A.Johnson, J.H.Kim, S.Koutsoliotas, M.J.Lamm, W.Marsh, D.Mason, J.McDonald, C.McNulty, D.Naples, P.Nienaber, A.Romosan, W.K.Sakumoto, H.Schellman, M.H.Shaevitz, P.Spentzouris, E.G.Stern, N.Suwonjandee, M.Tzanov, M.Vakili, A.Vaitaitis, U.K.Yang, J.Yu.E.D.Zimmerman

Precise Determination of Electroweak Parameters in Neutrino-Nucleon Scattering

NUCLEAR REACTIONS 1H(ν, ν'), (ν-bar, ν-bar'), E not given; measured ratio of neutral to charged current σ; deduced electroweak parameter. Comparison with model prediction.

doi: 10.1103/PhysRevLett.88.091802
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2002ZE05      Phys.Rev. D65, 111103 (2002)

G.P.Zeller, K.S.McFarland, T.Adams, A.Alton, S.Avvakumov, L.de Barbaro, P.de Barbaro, R.H.Bernstein, A.Bodek, T.Bolton, J.Brau, D.Buchholz, H.Budd, L.Bugel, J.Conrad, R.B.Drucker, B.T.Fleming, R.Frey, J.A.Formaggio, J.Goldman, M.Goncharov, D.A.Harris, R.A.Johnson, J.H.Kim, S.Koutsoliotas, M.J.Lamm, W.Marsh, D.Mason, J.McDonald, C.McNulty, D.Naples, P.Nienaber, A.Romosan, W.K.Sakumoto, H.Schellman, M.H.Shaevitz, P.Spentzouris, E.G.Stern, N.Suwonjandee, M.Tzanov, M.Vakili, A.Vaitaitis, U.K.Yang, J.Yu, E.D.Zimmerman

Effect of Asymmetric Strange Seas and Isospin-Violating Parton Distribution Functions on sin2θW Measured in the NuTeV Experiment

doi: 10.1103/PhysRevD.65.111103
Citations: PlumX Metrics


2000FO05      Phys.Rev.Lett. 84, 4043 (2000)

J.A.Formaggio, E.D.Zimmerman, T.Adams, A.Alton, S.Avvakumov, L.de Barbaro, P.de Barbaro, R.H.Bernstein, A.Bodek, T.Bolton, J.Brau, D.Buchholz, H.Budd, L.Bugel, S.Case, J.M.Conrad, R.B.Drucker, B.T.Fleming, R.Frey, J.Goldman, M.Goncharov, D.A.Harris, R.A.Johnson, J.H.Kim, S.Koutsoliotas, M.J.Lamm, W.Marsh, D.Mason, K.S.McFarland, C.McNulty, D.Naples, P.Nienaber, A.Romosan, W.K.Sakumoto, H.M.Schellman, M.H.Shaevitz, P.Spentzouris, E.G.Stern, M.Vakili, A.Vaitaitis, V.Wu, U.K.Yang, J.Yu, G.P.Zeller

Search for a 33.9 MeV/c2 Neutral Particle in Pion Decay

doi: 10.1103/PhysRevLett.84.4043
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2000TA05      Nucl.Phys. A663-664, 344c (2000)

B.H.Tamminga, T.Adams, A.Alton, C.G.Arroyo, S.Avvakumov, L.de Barbaro, P.de Barbaro, A.O.Bazarko, R.H.Bernstein, A.Bodek, T.Bolton, J.Brau, D.Buchholz, H.Budd, L.Bugel, J.Conrad, R.B.Drucker, J.A.Formaggio, R.Frey, J.Goldman, M.Goncharov, D.A.Harris, R.A.Johnson, J.H.Kim, B.J.King, T.Kinnel, S.Koutsoliotas, M.J.Lamm, W.Marsh, D.Mason, K.S.McFarland, C.McNulty, S.R.Mishra, D.Naples, P.Nienaber, A.Romosan, W.K.Sakumoto, H.Schellman, F.J.Sciulli, W.G.Seligman, M.H.Shaevitz, W.H.Smith, P.Spentzouris, E.G.Stern, M.Vakili, A.Vaitaitis, V.Wu, U.K.Yang, J.Yu, G.P.Zeller, E.D.Zimmerman

Low-Q2 Low-x Structure Function Analysis of CCFR Data for F2

doi: 10.1016/S0375-9474(99)00613-2
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