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NSR database version of April 24, 2024.

Search: Author = R.Moore

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2021MO27      Nucl.Technology 207, s222 (2021)

R.Moore, E.N.Brown

Woolwich, Bruceton, Los Alamos: Munroe Jets and the Trinity Gadget

doi: 10.1080/00295450.2021.1905463
Citations: PlumX Metrics


2021MO29      Nucl.Technology 207, s374 (2021)

R.Moore

Rudolf Peierls's "Outline of the Development of the British Tube Alloy Project": A 1945 Account of the Earliest UK Work on Atomic Energy

doi: 10.1080/00295450.2021.1910004
Citations: PlumX Metrics


2012FL05      J.Phys.(London) G39, 125101 (2012)

K.T.Flanagan, J.Billowes, P.Campbell, B.Cheal, G.D.Dracoulis, D.H.Forest, M.D.Gardner, J.Huikari, A.Jokinen, B.A.Marsh, R.Moore, A.Nieminen, H.Penttila, H.L.Thayer, G.Tungate, J.Aysto

Nuclear moments, charge radii and spins of the ground and isomeric states in 175Yb and 177Yb

NUCLEAR MOMENTS 175,177Yb; measured hyperfine structures; deduced static moments and changes in mean-square charge radii. Collinear laser spectroscopy at the IGISOL facility, comparison with Nilsson model.

doi: 10.1088/0954-3899/39/12/125101
Citations: PlumX Metrics

Data from this article have been entered in the XUNDL database. For more information, click here.


2006DI22      Int.J. Mass Spectrom. 251, 198 (2006)

J.Dilling, R.Baartman, P.Bricault, M.Brodeur, L.Blomeley, F.Buchinger, J.Crawford, J.R.C.Lopez-Urrutia, P.Delheij, M.Froese, G.P.Gwinner, Z.Ke, J.K.P.Lee, R.B.Moore, V.Ryjkov, G.Sikler, M.Smith, J.Ullrich, J.Vaz, and the TITAN collaboration

Mass measurements on highly charged radioactive ions, a new approach to high precision with TITAN

doi: 10.1016/j.ijms.2006.01.044
Citations: PlumX Metrics


2006MO48      Int.J. Mass Spectrom. 251, 190 (2006)

R.B.Moore, O.Gianfrancesco, R.Lumbo, S.Schwarz

The use of high RFQ fields to manipulate ions

doi: 10.1016/j.ijms.2006.01.039
Citations: PlumX Metrics


2005CL08      Eur.Phys.J. A 25, Supplement 1, 629 (2005)

J.A.Clark, R.C.Barber, B.Blank, C.Boudreau, F.Buchinger, J.E.Crawford, J.P.Greene, S.Gulick, J.C.Hardy, A.A.Hecht, A.Heinz, J.K.P.Lee, A.F.Levand, B.F.Lundgren, R.B.Moore, G.Savard, N.D.Scielzo, D.Seweryniak, K.S.Sharma, G.D.Sprouse, W.Trimble, J.Vaz, J.C.Wang, Y.Wang, B.J.Zabransky, Z.Zhou

Investigating the rp-process with the Canadian Penning trap mass spectrometer

ATOMIC MASSES 64Ge, 68Se; analyzed masses; deduced effective T1/2. 90,91Mo, 90,91,92,93Tc, 93,94Ru, 94,95Rh, 104,105,106,107In, 104,105,107,108Sn, 107,108Sb; measured masses. Penning trap, astrophysical implications discussed.

doi: 10.1140/epjad/i2005-06-172-3
Citations: PlumX Metrics


2005PA77      Nucl.Instrum.Methods Phys.Res. A547, 464 (2005)

T.Paduszynski, P.Sprunger, R.T.de Souza, S.Hudan, A.Alexander, B.Davin, G.Fleener, A.Mcintosh, C.Metelko, R.Moore, N.Peters, J.Poehlman, J.Gauthier, F.Grenier, R.Roy, D.Theriault, E.Bell, J.Garey, J.Iglio, A.L.Keksis, S.Parketon, C.Richers, D.V.Shetty, S.N.Soisson, G.A.Souliotis, B.Stein, S.J.Yennello

Resolving multiple particles in a highly segmented silicon array

NUCLEAR REACTIONS 64Zn(64Zn, X), E = 45 MeV/nucleon; measured charge particle multiplicity distributions.

doi: 10.1016/j.nima.2005.04.011
Citations: PlumX Metrics


2004CL07      Nucl.Phys. A746, 342c (2004)

J.A.Clark, R.C.Barber, B.Blank, C.Boudreau, F.Buchinger, J.E.Crawford, S.Gulick, J.C.Hardy, A.Heinz, J.K.P.Lee, A.F.Levand, R.B.Moore, G.Savard, D.Seweryniak, K.S.Sharma, G.D.Sprouse, W.Trimble, J.Vaz, J.C.Wang, Z.Zhou

Precise mass measurements of astrophysical interest made with the Canadian Penning trap mass spectrometer

ATOMIC MASSES 68Se, 141,142,143,144,145,146,147Ba, 143,144,145,146,147,148La, 145,146,147,148,149,150,151Ce, 148,149,150,151,152,153Pr; measured masses. Penning trap mass spectrometer.

doi: 10.1016/j.nuclphysa.2004.09.051
Citations: PlumX Metrics


2004DI18      Eur.Phys.J. A 22, 163 (2004)

J.Dilling, F.Herfurth, A.Kellerbauer, G.Audi, D.Beck, G.Bollen, H.-J.Kluge, R.B.Moore, C.Scheidenberger, S.Schwarz, G.Sikler, and the ISOLDE Collaboration

Direct mass measurements of neutron-deficient xenon isotopes using the ISOLTRAP mass spectrometer

ATOMIC MASSES 114,115,116,117,118,119,120,121,122,123Xe; measured masses. Penning trap spectrometer, comparisons with previous results. Application to atomic mass evaluation discussed.

doi: 10.1140/epja/i2004-10015-y
Citations: PlumX Metrics


2004GA34      J.Phys.(London) G30, 1089 (2004)

Yu.P.Gangrsky, K.P.Marinova, S.G.Zemlyanoi, I.D.Moore, J.Billowes, P.Campbell, K.T.Flanagan, D.H.Forest, J.A.R.Griffith, J.Huikari, R.Moore, A.Nieminen, H.Thayer, G.Tungate, J.Aysto

Nuclear charge radii of neutron deficient titanium isotopes 44Ti and 45Ti

NUCLEAR MOMENTS 44,45,46,47,48,49,50Ti; measured hfs, isotope shifts; deduced charge radii. Collinear laser spectroscopy.

doi: 10.1088/0954-3899/30/9/009
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2003HE05      J.Phys.(London) B36, 931 (2003)

F.Herfurth, F.Ames, G.Audi, D.Beck, K.Blaum, G.Bollen, A.Kellerbauer, H.-J.Kluge, M.Kuckein, D.Lunney, R.B.Moore, M.Oinonen, D.Rodriguez, E.Sauvan, C.Scheidenberger, S.Schwarz, G.Sikler, C.Weber, and the ISOLDE Collaboration

Mass measurements and nuclear physics - recent results from ISOLTRAP

ATOMIC MASSES Z=68-89; analyzed mass data; deduced two-neutron separation energies.

doi: 10.1088/0953-4075/36/5/312
Citations: PlumX Metrics


2003TH03      J.Phys.(London) G29, 2247 (2003)

H.L.Thayer, J.Billowes, P.Campbell, P.Dendooven, K.T.Flanagan, D.H.Forest, J.A.R.Griffith, J.Huikari, A.Jokinen, R.Moore, A.Nieminen, G.Tungate, S.Zemlyanoi, J.Aysto

Collinear laser spectroscopy of radioisotopes of zirconium

NUCLEAR MOMENTS 87,87m,88,89,89m,91,92,94,96,97,98,99,100,101,102Zr; measured hfs, isotope shifts; deduced μ, quadrupole moments, radii. Collinear laser spectroscopy.

doi: 10.1088/0954-3899/29/9/318
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2002CA37      Phys.Rev.Lett. 89, 082501 (2002)

P.Campbell, H.L.Thayer, J.Billowes, P.Dendooven, K.T.Flanagan, D.H.Forest, J.A.R.Griffith, J.Huikari, A.Jokinen, R.Moore, A.Nieminen, G.Tungate, S.Zemlyanoi, J.Aysto

Laser Spectroscopy of Cooled Zirconium Fission Fragments

NUCLEAR MOMENTS 97,99,101Zr; measured hfs, μ, quadrupole moments. 96,97,98,99,100,101,102Zr; measured isotope shifts, radii. On-line laser spectroscopy.

doi: 10.1103/PhysRevLett.89.082501
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2002CA47      Eur.Phys.J. A 15, 45 (2002)

P.Campbell, A.Nieminen, J.Billowes, P.Dendooven, K.T.Flanagan, D.H.Forest, Yu.P.Gangrsky, J.A.R.Griffith, J.Huikari, A.Jokinen, I.D.Moore, R.Moore, H.L.Thayer, G.Tungate, S.G.Zemlyanoi, J.Aysto

First results from laser spectroscopy on bunched radioactive beams from the JYFL ion-beam cooler

NUCLEAR MOMENTS 44,45,46,48,49,50Ti, 87,88,89Zr, 170,171,172,173,174,175,176,177,178,179,180Hf; measured hfs, charge radii. Ion-beam cooler, laser spectroscopy.

doi: 10.1140/epja/i2001-10223-y
Citations: PlumX Metrics


2002DI18      Nucl.Phys. A701, 520c (2002)

J.Dilling, G.Audi, D.Beck, G.Bollen, S.Henry, F.Herfurth, A.Kellerbauer, H.-J.Kluge, D.Lunney, R.B.Moore, C.Scheidenberger, S.Schwarz, G.Sikler, J.Szerypo, and the ISOLDE Collaboration

Direct Mass Measurements of Neutron-Deficient Xenon Isotopes with the ISOLTRAP Mass Spectrometer

ATOMIC MASSES 114,115,116,117,118,119,120,121,122,123,124Xe; measured masses. Penning trap.

doi: 10.1016/S0375-9474(01)01638-4
Citations: PlumX Metrics


2002FO12      J.Phys.(London) G28, L63 (2002)

D.H.Forest, J.Billowes, P.Campbell, P.Dendooven, K.T.Flanagan, J.A.R.Griffith, J.Huikari, A.Jokinen, R.Moore, A.Nieminen, H.L.Thayer, G.Tungate, S.Zemlyanoi, J.Aysto

Laser spectroscopy of neutron deficient zirconium isotopes

NUCLEAR MOMENTS 87,87m,88,89,89mZr; measured hfs; deduced radii, μ, quadrupole moments, ground-state J. Collinear laser spectroscopy, cooled and bunched ion beams.

doi: 10.1088/0954-3899/28/12/101
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2002HE13      Nucl.Phys. A701, 516c (2002)

F.Herfurth, G.Audi, D.Beck, G.Bollen, J.Dilling, S.Henry, A.Kellerbauer, H.-J.Kluge, V.Kolhinen, D.Lunney, R.B.Moore, C.Scheidenberger, S.Schwarz, G.Sikler, J.Szerypo, and the ISOLDE Collaboration

Extension of Penning-Trap Mass Measurements to Very Short-Lived Nuclides

ATOMIC MASSES 33Ar; measured mass. Penning trap.

doi: 10.1016/S0375-9474(01)01637-2
Citations: PlumX Metrics


2002HE23      Eur.Phys.J. A 15, 17 (2002)

F.Herfurth, A.Kellerbauer, F.Ames, G.Audi, D.Beck, K.Blaum, G.Bollen, O.Engels, H.J.Kluge, D.Lunney, R.B.Moore, M.Oinonen, E.Sauvan, C.Scheidenberger, S.Schwarz, G.Sikler, C.Weber, and the ISOLDE Collaboration

Accurate mass measurements of very short-lived nuclei: Prerequisites for high-accuracy investigations of superallowed β-decays

ATOMIC MASSES 34,36,38Ar, 41K, 74,76Rb, 73,74,75,76,77,78,80,82Kr; measured masses. Penning-trap mass spectrometer.

doi: 10.1140/epja/i2001-10216-x
Citations: PlumX Metrics


2002KE07      Nucl.Phys. A701, 565c (2002)

A.Kellerbauer, G.Bollen, J.Dilling, S.Henry, F.Herfurth, H.-J.Kluge, E.Lamour, R.B.Moore, C.Scheidenberger, S.Schwarz, G.Sikler, J.Szerypo

A Linear Radiofrequency Quadrupole Ion Trap for the Cooling and Bunching of Radioactive Ion Beams

doi: 10.1016/S0375-9474(01)01645-1
Citations: PlumX Metrics


2002MO31      Phys.Lett. 547B, 200 (2002)

R.Moore, A.M.Bruce, P.Dendooven, J.Billowes, P.Campbell, A.Ezwam, K.T.Flanagan, D.H.Forest, J.Huikari, A.Jokinen, A.Nieminen, H.L.Thayer, G.Tungate, S.Zemlyanoi, J.Aysto

Character of an 8- isomer of 130Ba

RADIOACTIVITY 130mBa(IT) [from 133Cs(d, 5n)]; measured Eγ, Iγ, T1/2.

NUCLEAR MOMENTS 130mBa; measured μ, static quadrupole moment, isomer shift. 130Ba levels deduced configurations, deformation. Collinear laser spectroscopy.

doi: 10.1016/S0370-2693(02)02784-3
Citations: PlumX Metrics


2002NI12      Phys.Rev.Lett. 88, 094801 (2002)

A.Nieminen, P.Campbell, J.Billowes, D.H.Forest, J.A.R.Griffith, J.Huikari, A.Jokinen, I.D.Moore, R.Moore, G.Tungate, J.Aysto

On-Line Cooling and Bunching for Collinear Laser Spectroscopy

NUCLEAR MOMENTS 175Hf; measured hfs; deduced μ, quadrupole moment, charge radius. Collinear laser spectroscopy.

doi: 10.1103/PhysRevLett.88.094801
Citations: PlumX Metrics


2002RA23      Nucl.Phys. A706, 3 (2002)

H.Raimbault-Hartmann, G.Audi, D.Beck, G.Bollen, M.de Saint Simon, H.-J.Kluge, M.Konig, R.B.Moore, S.Schwarz, G.Savard, J.Szerypo, and the ISOLDE Collaboration

High-Accuracy Mass Determination of Neutron-Rich Rubidium and Strontium Isotopes

ATOMIC MASSES 88,89,90,91,92,93,94Rb, 91,92,93,94,95Sr; measured masses. On-line mass spectrometry. Penning trap. Least-squares adjustment of data.

doi: 10.1016/S0375-9474(02)00863-1
Citations: PlumX Metrics


2002SC27      Nucl.Phys. A701, 579c (2002)

J.Schonfelder, D.Ackermann, H.Backe, G.Bollen, J.Dilling, A.Dretzke, O.Engels, J.Estermann, D.Habs, S.Hofmann, F.P.Hessberger, H.-J.Kluge, W.Lauth, W.Ludolphs, M.Maier, G.Marx, R.B.Moore, W.Quint, D.Rodriguez, M.Sewtz, G.Sikler, C.Toader, Chr.Weber

SHIPTRAP - A Capture and Storage Facility for Heavy Radionuclides at GSI

doi: 10.1016/S0375-9474(01)01648-7
Citations: PlumX Metrics


2001BO59      Hyperfine Interactions 132, 215 (2001)

G.Bollen, F.Ames, G.Audi, D.Beck, J.Dilling, O.Engels, S.Henry, F.Herfurth, A.Kellerbauer, H.-J.Kluge, A.Kohl, E.Lamour, D.Lunney, R.B.Moore, M.Oinonen, C.Scheidenberger, S.Schwarz, G.Sikler, J.Szerypo, C.Weber, and the ISOLDE Collaboration

Mass Measurements on Short-Lived Nuclides with ISOLTRAP

ATOMIC MASSES 132,133,134Ce, 142Sm, 147,148,149Eu, 149Dy, 158,159,160,161,162,163,164Yb, 165Tm; measured masses. Penning trap spectrometer.

doi: 10.1023/A:1011943813020
Citations: PlumX Metrics


2001DI25      Hyperfine Interactions 132, 331 (2001)

J.Dilling, G.Audi, D.Beck, G.Bollen, F.Herfurth, A.Kellerbauer, H.-J.Kluge, D.Lunney, R.B.Moore, C.Scheidenberger, S.Schwarz, G.Sikler, J.Szerypo, and the ISOLDE Collaboration

Mass Measurements of 114-124, 130Xe with the ISOLTRAP Penning Trap Spectrometer

ATOMIC MASSES 114,115,116,117,118,119,120,121,122,123,124,130Xe; measured masses. Penning trap spectrometer.


2001HE29      Phys.Rev.Lett. 87, 142501 (2001)

F.Herfurth, J.Dilling, A.Kellerbauer, G.Audi, D.Beck, G.Bollen, H.-J.Kluge, D.Lunney, R.B.Moore, C.Scheidenberger, S.Schwarz, G.Sikler, J.Szerypo, and the ISOLDE Collaboration

Breakdown of the Isobaric Multiplet Mass Equation at A = 33, T = 3/2

ATOMIC MASSES 33,34,42,43Ar; measured masses. Penning trap mass spectrometer, linear Paul trap. Comparison with isobaric multiplet mass equation.

doi: 10.1103/PhysRevLett.87.142501
Citations: PlumX Metrics


2001HE37      Hyperfine Interactions 132, 309 (2001)

F.Herfurth, J.Dilling, A.Kellerbauer, G.Audi, D.Beck, G.Bollen, S.Henry, H.-J.Kluge, D.Lunney, R.B.Moore, C.Scheidenberger, S.Schwarz, G.Sikler, J.Szerypo, and the ISOLDE Collaboration

Towards Shorter-Lived Nuclides in ISOLTRAP Mass Measurements

ATOMIC MASSES 33,34,42,43Ar; measured masses. Penning trap mass spectrometer.

doi: 10.1023/A:1011928124996
Citations: PlumX Metrics


2001KE18      Hyperfine Interactions 132, 511 (2001)

A.Kellerbauer, G.Bollen, J.Dilling, S.Henry, F.Herfurth, H.-J.Kluge, E.Lamour, D.Lunney, R.B.Moore, C.Scheidenberger, S.Schwarz, G.Sikler, J.Szerypo

Improvement of the Applicability, Efficiency, and Precision of the Penning Trap Mass Spectrometer ISOLTRAP

doi: 10.1023/A:1011991316760
Citations: PlumX Metrics


2001MA99      Hyperfine Interactions 132, 521 (2001)

M.Maier, C.Boudreau, F.Buchinger, J.A.Clark, J.E.Crawford, J.Dilling, H.Fukutani, S.Gulick, J.K.P.Lee, R.B.Moore, G.Savard, J.Schwartz, K.S.Sharma

Stopping, Trapping and Cooling of Radioactive Fission Fragments in a Ion Catcher Device

doi: 10.1023/A:1011999501739
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2001QU04      Hyperfine Interactions 132, 457 (2001)

W.Quint, J.Dilling, S.Djekic, H.Haffner, N.Hermanspahn, H.-J.Kluge, G.Marx, R.Moore, D.Rodriguez, J.Schonfelder, G.Sikler, T.Valenzuela, J.Verdu, C.Weber, G.Werth

HITRAP: A facility for experiments with trapped highly charged ions

doi: 10.1023/A:1011908332584
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2001SA73      Hyperfine Interactions 132, 223 (2001)

G.Savard, R.C.Barber, C.Boudreau, F.Buchinger, J.Caggiano, J.Clark, J.E.Crawford, H.Fukutani, S.Gulick, J.C.Hardy, A.Heinz, J.K.P.Lee, R.B.Moore, K.S.Sharma, J.Schwartz, D.Seweryniak, G.D.Sprouse, J.Vaz

The Canadian Penning Trap Spectrometer at Argonne

doi: 10.1023/A:1011986930931
Citations: PlumX Metrics


2001SC41      Nucl.Phys. A693, 533 (2001)

S.Schwarz, F.Ames, G.Audi, D.Beck, G.Bollen, C.De Coster, J.Dilling, O.Engels, R.Fossion, J.-E.Garcia Ramos, S.Henry, F.Herfurth, K.Heyde, A.Kellerbauer, H.-J.Kluge, A.Kohl, E.Lamour, D.Lunney, I.Martel, R.B.Moore, M.Oinonen, H.Raimbault-Hartmann, C.Scheidenberger, G.Sikler, J.Szerypo, C.Weber, and the ISOLDE Collaboration

Accurate Masses of Neutron-Deficient Nuclides Close to Z = 82

ATOMIC MASSES 179,180,181,182,183,184,185,185m,186,187,187m,188,189m,190,191,191m,192,193,193m,194,195,196,197,197m,200Hg, 196,198,204Pb, 197Bi, 198Po, 203At; measured masses. Penning trap.

doi: 10.1016/S0375-9474(01)00881-8
Citations: PlumX Metrics


2001SC54      Hyperfine Interactions 132, 337 (2001)

S.Schwarz, F.Ames, G.Audi, D.Beck, G.Bollen, J.Dilling, F.Herfurth, H.-J.Kluge, A.Kellerbauer, A.Kohl, D.Lunney, R.B.Moore, H.Raimbault-Hartmann, C.Scheidenberger, G.Sikler, J.Szerypo

Accurate Mass Determination of Neutron-Deficient Nuclides Close to Z = 82 with ISOLTRAP

ATOMIC MASSES 182,183,184,185,186,187,188,189,190,191,192,193,194,195,196,197Hg, 196,198Pb, 197Bi, 198Po, 203At; measured masses. 185,187,191,193,197Hg; measured isomeric states energies. Penning trap mass spectrometer, gas-filled radiofrequency quadrupole trap.

doi: 10.1023/A:1011996613609
Citations: PlumX Metrics


2000BE42      Eur.Phys.J. A 8, 307 (2000)

D.Beck, F.Ames, G.Audi, G.Bollen, F.Herfurth, H.-J.Kluge, A.Kohl, M.Konig, D.Lunney, I.Martel, R.B.Moore, H.Raimbault-Hartmann, E.Schark, S.Schwarz, M.de Saint Simon, J.Szerypo, and the ISOLDE Collaboration

Accurate Masses of Unstable Rare-Earth Isotopes by ISOLTRAP

ATOMIC MASSES 133Cs, 123,125,127Ba, 133,134,135,136,137Pr, 130,132,134,135,136,137,138Nd, 136,137,138,139,140,141,143Pm, 136,137,138,139,140,141,142,143Sm, 139,141,142,143,144,145,146,147,148,149,151,153Eu, 148,149,154Dy, 150Ho; measured mass. Penning trap.

COMPILATION Z=55-80; compiled, evaluated atomic mass data.

NUCLEAR REACTIONS 181Ta(p, X)133Ce/133Pr/133Nd/138Nd/138Pm/139Pm/140Pm/142Pm/139Sm/140Sm/141Sm/142Sm/143Sm/138Eu/140Eu/141Eu/142Eu/143Eu/144Eu/143Gd/144Tb/148Tb/150Tb/151Tb/148Dy/150Dy/151Dy/150Ho/151Ho/176Yb/168Lu/176W/176Ta, E=1 GeV; measured Eγ, secondary beam intensity yield. Isolde mass separator.

doi: 10.1007/s100500070085
Citations: PlumX Metrics


1999AM05      Nucl.Phys. A651, 3 (1999)

F.Ames, G.Audi, D.Beck, G.Bollen, M.de Saint Simon, R.Jertz, H.-J.Kluge, A.Kohl, M.Konig, D.Lunney, I.Martel, R.B.Moore, T.Otto, Z.Patyk, H.Raimbault-Hartmann, G.Rouleau, G.Savard, E.Schark, S.Schwarz, L.Schweikhard, H.Stolzenberg, J.Szerypo, and the ISOLDE Collaboration

High-Accuracy Mass Determination of Unstable Cesium and Barium Isotopes

ATOMIC MASSES 117,118,119,120,122,123,124,125,126,127,128,129,130,131,132,133,134,135,136,137,138,139,140,141,142Cs, 123,124,125,126,127,128,131,138,139,140,141,142,143,144Ba; measured masses. Online mass spectrometry, Penning trap, least-squares adjustment of data. Macroscopic-microscopic model calculations.

doi: 10.1016/S0375-9474(99)00111-6
Citations: PlumX Metrics


1999SA76      Nucl.Phys. (Supplement) A654, 961c (1999)

G.Savard, R.C.Barber, F.Buchinger, J.E.Crawford, X.Feng, S.Gulick, G.Hackman, J.C.Hardy, J.K.P.Lee, R.B.Moore, K.S.Sharma, J.Uusitalo

Weak Interaction Studies with an On-Line Penning Trap Mass Spectrometer

doi: 10.1016/S0375-9474(00)88581-4
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1997SA60      Nucl.Phys. A626, 353c (1997)

G.Savard, R.C.Barber, D.Beeching, F.Buchinger, J.E.Crawford, S.Gulick, X.Feng, E.Hagberg, J.C.Hardy, V.T.Koslowsky, J.K.P.Lee, R.B.Moore, K.S.Sharma, M.Watson

The Canadian Penning Trap Mass Spectrometer

doi: 10.1016/S0375-9474(97)00557-5
Citations: PlumX Metrics


1996BO47      Nucl.Instrum.Methods Phys.Res. A368, 675 (1996)

G.Bollen, S.Becker, H.-J.Kluge, M.Konig, R.B.Moore, T.Otto, H.Raimbault-Hartmann, G.Savard, L.Schweikhard, H.Stolzenberg, and the ISOLDE Collaboration

ISOLTRAP: A tandem Penning trap system for accurate on-line mass determination of short-lived isotopes

doi: 10.1016/0168-9002(95)00561-7
Citations: PlumX Metrics


1994KE12      Nucl.Instrum.Methods Phys.Res. A353, 444 (1994)

J.J.Kehayias, H.Zhuang, L.Dowling, R.Ma, R.Moore

Choice of Detectors for in Vivo Elemental Analysis by Counting Natural and Neutron-Induced Gamma Rays for Medical Applications

doi: 10.1016/0168-9002(94)91695-0
Citations: PlumX Metrics


1994OT01      Nucl.Phys. A567, 281 (1994)

T.Otto, G.Bollen, G.Savard, L.Schweikhard, H.Stolzenberg, G.Audi, R.B.Moore, G.Rouleau, J.Szerypo, Z.Patyk, and the ISOLDE Collaboration

Penning-Trap Mass Measurements of Neutron-Deficient Rb abd Sr Isotopes

ATOMIC MASSES 75,76,77,78,79,80,81,82,83,84,85,86,87Rb, 78,79,80,81,82,83,87Sr; measured masses. Penning-trap mass spectrometer (on-line), least-squares adjustment of data. Macroscopic-microscopic mass calculations.

doi: 10.1016/0375-9474(94)90149-X
Citations: PlumX Metrics


1993BA08      Nucl.Phys. A553, 313c (1993)

H.Backe, H.Barth, J.Bonn, B.Degen, Th.Edling, L.Fleischmann, J.U.Grooss, A.Hermanni, G.Kube, P.Leiderer, Th.Loeken, A.Molz, R.B.Moore, A.Osipowicz, E.W.Otten, A.Picard, M.Przyrembel, M.Schrader, M.Steininger, Ch.Weinheimer

A New Upper Limit of the Electron Antineutrino Rest Mass from Tritium β-Decay

RADIOACTIVITY 3H(β-); measured β-endpoint spectrum; deduced ν(bar)(e) rest mass upper limit. Molecular tritium, new solenoid retarding spectrometer.

doi: 10.1016/0375-9474(93)90632-8
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1993WE03      Phys.Lett. 300B, 210 (1993)

Ch.Weinheimer, M.Przyrembel, H.Backe, H.Barth, J.Bonn, B.Degen, T.Edling, H.Fischer, L.Fleischmann, J.U.Grooss, R.Haid, A.Hermanni, G.Kube, P.Leiderer, Th.Loeken, A.Molz, R.B.Moore, A.Osipowicz, E.W.Otten, A.Picard, M.Schrader, M.Steininger

Improved Limit on the Electron-Antineutrino Rest Mass from Tritium β-Decay

RADIOACTIVITY 3H(β-); measured β-spectrum endpoint energy; deduced electron-antineutrino mass upper limit. 3H, 3He deduced atomic mass difference.

doi: 10.1016/0370-2693(93)90355-L
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1992BO28      J.Mod.Opt. 39, 257 (1992)

G.Bollen, J.-J.Kluge, Th.Otto, G.Savard, L.Schweikhard, H.Stolzenberg, G.Audi, R.B.Moore, G.Rouleau, and the ISOLDE Collaboration

Mass Determination of Francium and Radium Isotopes by a Penning Trap Mass Spectrometer

ATOMIC MASSES 209,210,211,212,221,222Fr, 226,230Ra; measured mass. Tandem Penning trap mass spectrometer.

doi: 10.1080/09500349214550261
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1992BO31      Phys.Rev. C46, R2140 (1992)

G.Bollen, H.-J.Kluge, M.Konig, T.Otto, G.Savard, H.Stolzenberg, R.B.Moore, G.Rouleau, G.Audi, and the ISOLDE Collaboration

Resolution of Nuclear Ground and Isomeric States by a Penning Trap Mass Spectrometer

ATOMIC MASSES 78m,78g,84m,84gRb; measured cyclotron frequency; deduced masses, excitation energy. Penning trap mass spectrometer, on-line isotope separation.

doi: 10.1103/PhysRevC.46.R2140
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1992PI11      Nucl.Instrum.Methods Phys.Res. B63, 345 (1992)

A.Picard, H.Backe, H.Barth, J.Bonn, B.Degen, Th.Edling, R.Haid, A.Hermanni, P.Leiderer, Th.Loeken, A.Molz, R.B.Moore, A.Osipowicz, E.W.Otten, M.Przyrembel, M.Schrader, M.Steininger, Ch.Weinheimer

A Solenoid Retarding Spectrometer with High Resolution and Transmission for keV Electrons

RADIOACTIVITY 83mKr(IT); measured I(ce); deduced transition energy. Solenoid retarding spectrometer.

doi: 10.1016/0168-583X(92)95119-C
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1990ST25      Phys.Rev.Lett. 65, 3104 (1990)

H.Stolzenberg, St.Becker, G.Bollen, F.Kern, H.-J.Kluge, Th.Otto, G.Savard, L.Schweikhard, G.Audi, R.B.Moore

Accurate Mass Determination of Short-Lived Isotopes by a Tandem Penning-Trap Mass Spectrometer

ATOMIC MASSES 118,119,120,121,122,123,124,125,126,127,128,129,130,131,132,133,134,135,135,137Cs; measured masses. Tandem Penning-trap mass spectrometer, comparison with other methods.

doi: 10.1103/PhysRevLett.65.3104
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1989HE11      Nucl.Phys. A494, 1 (1989)

D.W.Hetherington, A.Alousi, R.B.Moore

The Shape Factor of the 20F Beta Spectrum

RADIOACTIVITY 20F [from 19F(d, p)]; measured Eβ, shape factor. 42K [from 41K(d, p)]; measured Eβ, Iβ, shape factor. 38Cl [from 37Cl(d, p)]; measured Eβ, Iβ, shape factor. 88Rb [from 238U(p, F), 238U(d, F)]; measured Eβ, Iβ, shape factor.

doi: 10.1016/0375-9474(89)90196-6
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1987BO59      Hyperfine Interactions 38, 793 (1987)

G.Bollen, P.Dabkiewicz, P.Egelhof, T.Hilberath, H.Kalinowsky, F.Kern, H.Schnatz, L.Schweikhard, H.Stolzenberg, R.B.Moore, H.-J.Kluge, G.M.Temmer, G.Ulm, and the ISOLDE Collaboration

First Absolute Mass Measurements of Short-Lived Isotopes

RADIOACTIVITY 77Rb(β+), (EC); measured T1/2. On-line mass separator, Penning trap ion confinement.

ATOMIC MASSES 39K, 85,87,77Rb, 133Cs; analyzed data; deduced mass measurement accuracies.

doi: 10.1007/BF02394875
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1987BU12      Nucl.Instrum.Methods Phys.Res. B26, 151 (1987)

L.Buchmann, J.M.D'Auria, J.D.King, G.Mackenzie, H.Schneider, R.B.Moore, C.Rolfs

An ISOL/Post-Accelerator Facility for Nuclear Astrophysics at TRIUMF

NUCLEAR REACTIONS 13N(p, γ), E(cm)=260-700 keV; compiled thin target yields; 19Ne(p, γ), E ≈ 0.694-1.565 MeV; compiled thick target yields.

doi: 10.1016/0168-583X(87)90744-0
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1987LO08      Nucl.Instrum.Methods Phys.Res. A256, 135 (1987)

M.A.Lone, R.T.Jones, B.M.Townes, L.Nikkinen, R.B.Moore

Total Neutron Yields from 100 MeV Protons on Cu, Fe, and Th

NUCLEAR REACTIONS Fe, Cu, Th(p, n), E=100 MeV; measured per proton thick target neutron yields. Nuclear cascade evaporation model calculations.

doi: 10.1016/0168-9002(87)91048-5
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1987WA06      Phys.Rev.Lett. 58, 1516 (1987)

K.Wallmeroth, G.Bollen, A.Dohn, P.Egelhof, J.Gruner, F.Lindenlauf, U.Kronert, J.Campos, A.Rodriguez Yunta, M.J.G.Borge, A.Venugopalan, J.L.Wood, R.B.Moore, H.-J.Kluge

Sudden Change in the Nuclear Charge Distribution of very Light Gold Isotopes

RADIOACTIVITY 185,186,187,188,189,189m,190Au; measured isotope shifts, hfs. 185,186,187,188,189,189m,190Au deduced charge radii, μ, deformation parameters. Resonance ionization mass spectrometry.

doi: 10.1103/PhysRevLett.58.1516
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1987WA23      Hyperfine Interactions 34, 21 (1987)

K.Wallmeroth, G.Bollen, M.J.G.Borge, J.Campos, A.Dohn, P.Egelhof, J.Gruner, H.-J.Kluge, U.Kronert, F.Lindenlauf, R.B.Moore, A.Rodriguez, A.Venugopalan, J.L.Wood, and the ISOLDE Collaboration

Nuclear Shape Transition in Neutron-Deficient Gold Isotopes

RADIOACTIVITY 189,189m,188,187,186,185Au; measured hfs, isotope shift; deduced hyperfine constants, μ. 189,188,187,186,185Au deduced rms charge radii, shape transition characteristics.

doi: 10.1007/BF02072675
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1985MI16      Phys.Rev. C32, 995 (1985)

C.S.Mishra, B.M.Preedom, B.G.Ritchie, R.S.Moore, M.Blecher, K.Gotow, R.L.Burman, M.V.Hynes, E.Piasetzky, N.S.Chant, P.G.Roos, F.E.Bertrand, T.Sjoreen, F.E.Obenshain, E.E.Gross

Isospin Effect in π± 14C Elastic Scattering at 50 MeV

NUCLEAR REACTIONS 14C(π+, π+), (π-, π-), E=50 MeV; measured σ(θ). 12C(π+, π+), (π-, π-), E=50 MeV; analyzed σ(θ); deduced isospin dependence, neutron, proton density equality.

doi: 10.1103/PhysRevC.32.995
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1985MO22      Nucl.Instrum.Methods 242, 134 (1985)

R.S.Moore, F.T.Avignone III

An Experimental Test of Computed Responses of Bismuth Germanate to Gamma Rays

RADIOACTIVITY 60Co(β-); 22Na(β+), (EC); 137Cs(β-); 207Bi(EC), (β+); measured Eγ, Iγ; deduced BGO absorption coefficients. Thick bismuth germanate scintillation spectrometer.

doi: 10.1016/0168-9002(85)90897-6
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1985ST10      Z.Phys. A321, 537 (1985)

J.Streib, H.-J.Kluge, H.Kremmling, R.B.Moore, H.W.Schaaf, K.Wallmeroth, and the ISOLDE Collaboration

Isotope Shifts of Neutron-Deficient Gold Isotopes with 193 ≥ A ≥ 190

RADIOACTIVITY 190,191,192,193Au [from Hg isotope decay]; measured isotope shifts relative to 197Au; deduced rms charge radii. Resonance fluorescence spectroscopy.

doi: 10.1007/BF01432427
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1985TO11      Phys.Rev. C32, 342 (1985)

K.S.Toth, Y.A.Ellis-Akovali, F.T.Avignone III, R.S.Moore, D.M.Moltz, J.M.Nitschke, P.A.Wilmarth, P.K.Lemmertz, D.C.Sousa, A.L.Goodman

Single-Particle States in 149Er and 149Ho, and the Effect of the Z = 64 Closure

NUCLEAR STRUCTURE 133Sb, 135I, 137Cs, 139La, 141Pr, 143Pm, 145Eu, 147Tb, 149Ho, 131Sn, 133Te, 137Ba, 139Ce, 141Nd, 143Sm, 145Gd, 147Dy, 149Er; calculated single particle states. Hartree-Fock method.

RADIOACTIVITY 149Er(β+), (EC), 149mEr [from 144Sm(12C, 7n), E=135 MeV]; measured Eγ, Iγ, γγ-coin, T1/2, β-delayed Ep, Ip. 149Er deduced levels, J, π, ICC. 149Ho deduced levels, J, π. Mass separation.

doi: 10.1103/PhysRevC.32.342
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1983LO12      Nucl.Instrum.Methods 214, 333 (1983)

M.A.Lone, R.T.Jones, A.Okazaki, B.M.Townes, D.C.Santry, E.D.Earle, J.K.P.Lee, J.M.Robson, R.B.Moore, L.Nikkinen, V.Raut

Total Neutron Yields from 100 MeV Protons on Pb and 7Li Targets

NUCLEAR REACTIONS, ICPND Pb, 7Li(p, n), E=100 MeV; measured thick target neutron yields. Water bath method. Nucleon-meson transport calculations.

doi: 10.1016/0167-5087(83)90600-2
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetT0158.


1983RI04      Phys.Rev. C27, 1685 (1983)

B.G.Ritchie, G.S.Blanpied, R.S.Moore, B.M.Preedom, K.Gotow, R.C.Minehart, J.Boswell, G.Das, H.J.Ziock, N.S.Chant, P.G.Roos, W.J.Burger, S.Gilad, R.P.Redwine

Reaction π+ + d → p + p at 65 to 140 MeV

NUCLEAR REACTIONS 2H(π+, p), E=65-140 MeV; measured absolute σ(θ); deduced σ(E), reaction mechanism, resonance parameters. Legendre polynomial analysis.

doi: 10.1103/PhysRevC.27.1685
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1983RI06      Phys.Lett. 125B, 128 (1983)

B.G.Ritchie, R.S.Moore, B.M.Preedom, G.Das, R.C.Minehart, K.Gotow, W.J.Burger, H.J.Ziock

π+p Scattering at 65 to 140 MeV

NUCLEAR REACTIONS 1H(π+, π+), E=65-140 MeV; measured σ(θ). Phase shift analysis.

doi: 10.1016/0370-2693(83)91251-0
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1980PI01      Phys.Rev. C21, 28 (1980)

R.Pitthan, F.R.Buskirk, W.A.Houk, R.W.Moore

Giant Multipole Resonances in the Deformed Fissionable Nucleus 238U

NUCLEAR REACTIONS 238U(e, e'), E=87.5 MeV; measured σ(E). 238U resonances deduced multipolarity, B(λ), Γγ, Γ.

doi: 10.1103/PhysRevC.21.28
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1979DI02      Nucl.Instrum.Methods 159, 171 (1979)

M.Diksic, J.-L.Galinier, H.Marshall, L.Yaffe, R.B.Moore, D.C.Santry

Absolute Cross Sections for 64Cu and 61Cu Produced by Deuteron-Induced Reactions in Copper

NUCLEAR REACTIONS Cu(d, X)61Cu/64Cu, E=5.8-49.6 MeV; measured reaction products, Eγ, Iγ; deduced σ. Chemical separation.

doi: 10.1016/0029-554X(79)90345-8
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC1131.


1976MO12      Nucl.Instrum.Methods 133, 457 (1976)

R.B.Moore, S.I.Hayakawa, D.M.Rehfield

A High Energy Beta Spectrometer Using an Intrinsic Germanium Crystal in a Super-Conducting Solenoid

RADIOACTIVITY 32P, 47V, 64,66Ga; measured Eβ.

doi: 10.1016/0029-554X(76)90430-4
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1974SU01      Nucl.Phys. A218, 418 (1974)

H.C.Suk, J.E.Crawford, R.B.Moore

Absolute (p, xn) Cross-Section Measurements on 232Th

NUCLEAR REACTIONS 232Th(p, 6n), (p, 7n), E=20-100 MeV; measured absolute σ(E).

doi: 10.1016/0375-9474(74)90014-1
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetB0037.


1973NE02      J.Inorg.Nucl.Chem. 35, 361 (1973)

D.A.Newton, S.Sarkar, L.Yaffe, R.B.Moore

The Cross-Section for the Reaction 65Cu(p, pn)64Cu in the Energy Range 23-102 MeV

RADIOACTIVITY 61,64Cu; measured T1/2.

NUCLEAR REACTIONS 65Cu(p, pn), E=23-102 MeV; measured σ(E).

doi: 10.1016/0022-1902(73)80546-9
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetB0023.


1972IA01      Nucl.Phys. A182, 400 (1972)

R.Iafigliola, R.Turcotte, R.B.Moore, J.K.P.Lee

The Levels of 88Zr Observed in the Decay of 88gNb and 88mNb

RADIOACTIVITY 88gNb, 88mNb[from 90Zr(p, 3n)]; measured Eγ, Iγ, γ-γcoin; deduced log ft. 88Zr deduced levels, J, π, T1/2. Natural targets, Ge(Li) detectors.

doi: 10.1016/0375-9474(72)90286-2
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1972TU03      Nucl.Phys. A198, 67 (1972)

R.Turcotte, R.Iafigliola, R.B.Moore, J.K.P.Lee

The Level Structure of 87Zr

RADIOACTIVITY 87gNb, 87mNb[from 90Zr(p, 4n)]; 87mZr[from 90Zr(p, p3n), 89Y(p, 3n)]; measured Eγ, Iγ, γγ-coin, T1/2; deduced log ft. 87Zr deduced levels, J, π, T1/2. Natural targets; Ge(Li) detectors.

doi: 10.1016/0375-9474(72)90771-3
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1972TU07      Phys.Can. 28, No.4, 6, AD3 (1972)

R.E.Turcotte, R.B.Moore

A Search for New Isomers with a Rapid Extractor

RADIOACTIVITY 68As, 82,83m,83Y, 83mSr, 84,85,87mZr, 87,88m,88Nb, 87Mo; measured T1/2, Eγ. 68Ge, 82,83Y, 84,85Zr, 87,88Nb, 87Mo deduced transitions.


1968LE01      Nucl.Phys. A106, 357 (1968)

J.K.P.Lee, S.K.Mark, P.M.Portner, R.B.Moore

(p, d) Reactions on Light Nuclei at 100 MeV

NUCLEAR REACTIONS 7Li, 9Be, 12C, 16O(p, d), E = 100 MeV; measured σ(Ed, θ). 6Li, 8Be, 11C, 15O deduced levels, relative S. Natural targets.

doi: 10.1016/0375-9474(67)90880-9
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1967HO04      Can.J.Phys. 45, 101(1967)

Y.S.Horowitz, R.B.Moore, R.Barton

The Half-Lives of the 243-keV and 188-keV Levels in 125I

NUCLEAR STRUCTURE 125Xe; measured not abstracted; deduced nuclear properties.

doi: 10.1139/p67-011
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1966MA38      Can.J.Phys. 44, 2961 (1966)

S.K.Mark, P.M.Portner, R.B.Moore

The Scattering of Protons of 7Li, 9Be, and 12C at 100 MeV

NUCLEAR STRUCTURE 12C, 9Be, 7Li; measured not abstracted; deduced nuclear properties.

doi: 10.1139/p66-243
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1966PA06      Can.J.Phys. 44, 1029 (1966)

P.J.Pan, Y.S.Horowitz, R.B.Moore, R.Barton

Experimental Evidence for the Deformation of 128Ba

NUCLEAR STRUCTURE 128La; measured not abstracted; deduced nuclear properties.

doi: 10.1139/p66-086
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1963BA63      Can.J.Phys. 41, 2007 (1963)

R.Barton, R.McPherson, R.E.Bell, W.R.Frisken, W.T.Link, R.B.Moore

Observation of Delayed Proton Radioactivity

NUCLEAR STRUCTURE 13O, 25Si, 17Ne, 21Mg; measured not abstracted; deduced nuclear properties.

doi: 10.1139/p63-201
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1963MO10      Bull.Am.Phys.Soc. 8, No.4, 357, N7 (1963)

R.A.Moore, D.D.Watson, U.P.Wild, L.W.Seagondollar

γ-Radiations from P30

NUCLEAR STRUCTURE 30P; measured not abstracted; deduced nuclear properties.


1961SE07      Bull.Am.Phys.Soc. 6, No.5, 441, P9 (1961)

L.W.Seagondollar, L.K.Rangan, R.A.Moore, G.I.Harris

Decay Schemes and Properties of the Two States in Ca40 Near 9.87 MeV

NUCLEAR STRUCTURE 40Ca; measured not abstracted; deduced nuclear properties.


1960MO09      Bull.Am.Phys.Soc. 5, No.5, 338, A4 (1960)

R.B.Moore

Properties of Neutron Deficient Isotopes of Xenon

NUCLEAR STRUCTURE 123Xe, 125Xe, 122Xe, 121Xe; measured not abstracted; deduced nuclear properties.


1958WI37      Phys.Rev. 110, 139 (1958)

C.F.Williamson, E.L.Hudspeth, I.L.Morgan, R.G.Moore

Activation Cross Section for the Reaction Na23(n, p)Ne23

doi: 10.1103/PhysRev.110.139
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1957BO43      Bull.Am.Phys.Soc. 2, No.2, 104, J7 (1957)

N.A.Bostrom, R.G.Moore, I.L.Morgan

Na23(n, p)Ne23 Excitation Curve in the Energy Interval 3.3 to 6.0 MeV


1954BR80      Phys.Rev. 96, 827A (1954)

C.I.Browne, D.C.Hoffman, H.L.Smith, M.E.Bunker, J.P.Mize, J.W.Starner, R.L.Moore, J.P.Balagna

Radiations of Pa232

doi: 10.1103/PhysRev.96.827A
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1953MO74      Thesis, Ohio State Univ. (1953); Dissertation Abstr. 20, 2346 (1959)

R.L.Moore

Angular Correlation and Coincidence Studies of Alpha-Gamma Cascades from Protactinium231, Curium242, and Americium241


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Note: The following list of authors and aliases matches the search parameter R.Moore: , R.A.MOORE, R.B.MOORE, R.G.MOORE, R.L.MOORE, R.S.MOORE, R.W.MOORE