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NSR database version of April 11, 2024.

Search: Author = J.C.Walker

Found 20 matches.

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1980DE27      Phys.Lett. B94, 327 (1980)

W.DeJarnette, T.Hallman, E.McIntyre, J.C.Walker, L.Madansky, J.Carroll, A.Sagle, R.J.Semper

Limits on Threshold Phenomena in Central Collisions of 12C + Pb from 1-2 GeV/n

NUCLEAR REACTIONS Pb(12C, π0), (12C, π+), (12C, π-), E=1-2 GeV/nucleon; measured production σ; deduced central collision threshold phenomena limits.

doi: 10.1016/0370-2693(80)90889-8
Citations: PlumX Metrics


1971PA04      Phys.Rev. C3, 841 (1971)

F.T.Parker, K.A.Hardy, J.C.Walker

Mossbauer Effect in the 121.2-keV Transition in Sm147

NUCLEAR REACTIONS 147Sm(γ, γ), E=121.2 keV; measured Mossbauer effect. 147Sm level deduced μ, quadrupole moment.

doi: 10.1103/PhysRevC.3.841
Citations: PlumX Metrics


1970HA47      Nucl.Phys. A154, 497 (1970)

K.A.Hardy, U.Atzmony, J.C.Walker

Lower Limit on the Half-Life of the 113.8 Level of 175Lu by the Mossbauer Effect

NUCLEAR REACTIONS 175Lu(p, p')E=3 MeV; measured Mossbauer effect. 175Lu level deduced T1/2.

doi: 10.1016/0375-9474(70)90121-1
Citations: PlumX Metrics


1970WH02      Phys.Lett. 31B, 206 (1970)

R.M.Wheeler, U.Atzmony, K.A.Hardy, J.C.Walker

Isomer Shift in the 82 keV Transition of 154Sm

NUCLEAR REACTIONS 154Sm(γ, γ), E=82 keV; measured Mossbauer effect; deduced isomer shift.

doi: 10.1016/0370-2693(70)90105-X
Citations: PlumX Metrics


1969WH04      Phys.Rev. 186, 1280 (1969)

R.M.Wheeler, U.Atzmony, J.C.Walker

Magnetic Dipole and Electric Quadrupole Moments of the First 2+ State Of Sm154

NUCLEAR REACTIONS 154Sm(γ, γ), E = 82 keV; measured Mossbauer effect. 154Sm level deduced μ, quadrupole moment.

doi: 10.1103/PhysRev.186.1280
Citations: PlumX Metrics


1969WI04      Phys.Rev. 177, 1786 (1969)

J.W.Wiggins, J.C.Walker

Measurement of the Nuclear Moments of the First-Excited State of Er170 By the Mossbauer Effect

NUCLEAR REACTIONS 170Er(γ, γ), E=0.079 MeV; 166Er(γ, γ), E=0.080 MeV ; measured Mossbauer effect in ErFe2. 166,170Er deduced gR(170Er)/gR(166Er), Q0(170Er)/Q0(166Er). Enriched 170Er target for αα'γ γ-source.

doi: 10.1103/PhysRev.177.1786
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1967EC01      Phys.Rev. 156, 246 (1967)

J.S.Eck, Y.K.Lee, J.C.Walker, R.R.Stevens, Jr.

Mossbauer Effect Following Coulomb Excitation in the Even-Even Isotopes of Ytterbium

NUCLEAR STRUCTURE 172Yb, 176Yb, 174Yb; measured not abstracted; deduced nuclear properties.

doi: 10.1103/PhysRev.156.246
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1967EC02      Phys.Rev. 163, 1295 (1967)

J.S.Eck, Y.K.Lee, J.C.Walker

Measurement of the g(R) Factors for the First Excited States of Yb174 and Yb176 Using the Mossbauer Effect

NUCLEAR STRUCTURE 174Yb, 176Yb, 170Yb; measured not abstracted; deduced nuclear properties.

doi: 10.1103/PhysRev.163.1295
Citations: PlumX Metrics


1967EC03      Bull.Am.Phys.Soc. 12, No.4, 596, KH1 (1967)

J.S.Eck, Y.K.Lee, J.C.Walker

Measurement of the g(R) Factor for the 82.2-keV State of Yb176 Using the Mossbauer Effect

NUCLEAR STRUCTURE 176Yb; measured not abstracted; deduced nuclear properties.


1967HE04      Phys.Rev. 156, 391 (1967)

N.Hershkowitz, J.C.Walker

Mossbauer Effect of the Second Excited State of Fe57

NUCLEAR REACTIONS 57Fe(γ, γ), E=136.4 keV; measured Mossbauer effect. 57Fe level deduced g.

doi: 10.1103/PhysRev.156.391
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1967OL04      Phys.Letters 25B, 258 (1967)

J.R.Oleson, Y.K.Lee, J.C.Walker, J.W.Wiggins

Observation of the Mossbauer Effect in 238U Following Coulomb Excitation

NUCLEAR STRUCTURE 238U; measured not abstracted; deduced nuclear properties.

doi: 10.1016/0370-2693(67)90004-4
Citations: PlumX Metrics


1967RI05      Phys.Rev. 154, 287 (1967)

E.T.Ritter, P.W.Keaton, Jr., Y.K.Lee, R.R.Stevens, Jr., J.C.Walker

Mossbauer Effect Following Coulomb Excitation of Fe57

NUCLEAR STRUCTURE 57Fe; measured not abstracted; deduced nuclear properties.

doi: 10.1103/PhysRev.154.287
Citations: PlumX Metrics


1967ST17      Phys.Rev. 158, 1118 (1967)

R.S.Stevens, Jr., J.S.Eck, E.T.Ritter, Y.K.Lee, J.C.Walker

New Mossbauer Levels in the Rare Earths Following Coulomb Excitation

NUCLEAR STRUCTURE 160Gd, 155Gd, 156Gd, 158Gd, 164Dy, 168Er; measured not abstracted; deduced nuclear properties.

doi: 10.1103/PhysRev.158.1118
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1966EC04      Phys.Rev.Letters 17, 120 (1966)

J.Eck, Y.K.Lee, E.T.Ritter, R.R.Stevens, Jr., J.C.Walker

Observation of New Mossbauer Effects in Rare-Earth Isotopes Following Coulomb Excitation

NUCLEAR STRUCTURE 160Gd, 170Yb, 174Yb, 164Dy, 168Er; measured not abstracted; deduced nuclear properties.

doi: 10.1103/PhysRevLett.17.120
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1966ST06      Phys.Letters 21, 401 (1966)

R.R.Stevens, Jr., Y.K.Lee, J.C.Walker

Mossbauer Effect Measurements in the First and Second Excited States of Gadolinium-155

NUCLEAR STRUCTURE 155Gd; measured not abstracted; deduced nuclear properties.

doi: 10.1016/0031-9163(66)90503-8
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1965GO07      Phys.Rev.Letters 15, 418 (1965)

D.A.Goldberg, P.W.Keaton, Jr., Y.K.Lee, L.Madansky, J.C.Walker

Mossbauer Effect Resulting from the Reaction Fe56(d, p)Fe57

NUCLEAR STRUCTURE 57Fe; measured not abstracted; deduced nuclear properties.

doi: 10.1103/PhysRevLett.15.418
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1965LE13      Phys.Rev.Letters 14, 957 (1965)

Y.K.Lee, P.W.Keaton, Jr., E.T.Ritter, J.C.Walker

Mossbauer Effect from Coulomb-Excited Levels in Fe57

NUCLEAR STRUCTURE 57Fe; measured not abstracted; deduced nuclear properties.

doi: 10.1103/PhysRevLett.14.957
Citations: PlumX Metrics


1962WA27      Phys.Rev. 127, 1739 (1962)

J.C.Walker

Hyperfine Structure and Nuclear Moments of Thulium-166

NUCLEAR STRUCTURE 166Tm; measured not abstracted; deduced nuclear properties.

doi: 10.1103/PhysRev.127.1739
Citations: PlumX Metrics


1961WA02      Bull.Am.Phys.Soc. 6, No.1, 74, Y7 (1961)

J.C.Walker, D.L.Harris

Hyperfine Structure of Tm166

NUCLEAR STRUCTURE 166Tm; measured not abstracted; deduced nuclear properties.


1961WA04      Phys.Rev. 121, 224 (1961)

J.C.Walker, D.L.Harris

Nuclear Spins of Thulium-166 and 167

NUCLEAR STRUCTURE 166Tm, 167Tm; measured not abstracted; deduced nuclear properties.

doi: 10.1103/PhysRev.121.224
Citations: PlumX Metrics


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