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NSR database version of April 11, 2024.

Search: Author = R.S.Tickle

Found 32 matches.

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1999OD02      Nucl.Instrum.Methods Phys.Res. A422, 513 (1999)

T.W.O'Donnell, F.D.Becchetti, J.Brown, J.W.Janecke, M.Y.Lee, R.S.Raymond, D.A.Roberts, R.S.Tickle, H.C.Griffin, R.M.Ronningen

Isotope Yields with a Solenoid-Based Fragment Mass Analysis System - Prospects for Exotic Isotope Studies in the 10 ≤ Z ≤ 30 Range

NUCLEAR REACTIONS C(136Xe, X), E=30 MeV/nucleon; measured Z=24-29 fragments isotopic yields. Production of neutron-rich nuclides for structure studies.

doi: 10.1016/S0168-9002(98)01077-8
Citations: PlumX Metrics


1994LA29      Phys.Lett. 339B, 22 (1994)

J.Lauret, R.A.Lacey, A.Elmaani, A.Tsepetis, A.Moores, G.D.Westfall, D.Craig, E.Gualtieri, S.Hannuschke, T.Li, W.J.Llope, R.Pak, N.Stone, A.Vander Molen, J.Yee, A.Nadasen, R.S.Tickle, E.Norbeck

High-Order Azimuthal Correlation Functions: Powerful probes for collective motion in heavy ion reactions

NUCLEAR REACTIONS Sc(40Ar, X), E=35-115 MeV/nucleon; measured azimuthal correlation functions; deduced collective motion probing related features.

doi: 10.1016/0370-2693(94)91127-4
Citations: PlumX Metrics


1994LI07      Phys.Rev. C49, 1630 (1994)

T.Li, W.Bauer, D.Craig, E.Gualtieri, S.Hannuschke, R.Pak, A.M.Vander Molen, G.D.Westfall, J.S.Winfield, J.Yee, S.J.Yennello, R.Lacey, A.Nadasen, R.S.Tickle, E.Norbeck

Mass Dependence of Critical Behavior in Nucleus-Nucleus Collisions

NUCLEAR REACTIONS 45Sc(40Ar, X), E=15-115 MeV/nucleon; measured fragment σ(Z); deduced critical behavior mass dependence. Percolation model.

doi: 10.1103/PhysRevC.49.1630
Citations: PlumX Metrics


1994OD04      Nucl.Instrum.Methods Phys.Res. A353, 215 (1994)

T.W.O'Donnell, E.Aldredge, F.D.Becchetti, J.A.Brown, P.Conlan, J.Janecke, R.S.Raymond, D.A.Roberts, R.S.Tickle, H.C.Griffin, R.M.Ronningen

A Mass Separator using a Large Solenoid ' Lens ' with Time-of-Flight and Position Sensitive Detectors

NUCLEAR REACTIONS C(136Xe, X), E=30 MeV/nucleon; measured projectile fragmentation associated σ(θ), mass, charge distributions. Mass separator with large solenoid lens with tof, position sensitive detectors.

doi: 10.1016/0168-9002(94)91641-1
Citations: PlumX Metrics


1993BA19      Phys.Rev.Lett. 70, 3705 (1993)

E.Bauge, A.Elmaani, R.A.Lacey, J.Lauret, N.N.Ajitanand, D.Craig, M.Cronqvist, E.Gualtieri, S.Hannuschke, T.Li, B.Llope, T.Reposeur, A.Vander Molen, G.D.Westfall, J.S.Winfield, J.Yee, S.Yennello, A.Nadasen, R.S.Tickle, E.Norbeck

Observation of a Saturation in the Time Scale for Multifragment Emission in Symmetric Heavy-Ion Collisions

NUCLEAR REACTIONS 93Nb(84Kr, X), E=35-75 MeV/nucleon; measured (fragment)(fragment) reduced velocity correlation functions; deduced intermediate mass fragment emission T1/2, time scale saturation.

doi: 10.1103/PhysRevLett.70.3705
Citations: PlumX Metrics


1993LA02      Phys.Rev.Lett. 70, 1224 (1993)

R.A.Lacey, A.Elmaani, J.Lauret, T.Li, W.Bauer, D.Craig, M.Cronqvist, E.Gualtieri, S.Hannuschke, T.Reposeur, A.Vander Molen, G.D.Westfall, W.K.Wilson, J.S.Winfield, J.Lee, S.Yennello, A.Nadasen, R.S.Tickle, E.Norbeck

Multifragment Azimuthal Correlation Functions: Probes from reaction dynamics in collisions of intermediate energy heavy ions

NUCLEAR REACTIONS 45Sc(40Ar, X), E=45 MeV/nucleon; measured (fragment)(fragment)(φ); deduced rotational collective motion, flow dominance, usefulness as reaction dynamics probe.

doi: 10.1103/PhysRevLett.70.1224
Citations: PlumX Metrics


1993LI08      Phys.Rev.Lett. 70, 1924 (1993)

T.Li, W.Bauer, D.Craig, M.Cronqvist, E.Gualtieri, S.Hannuschke, R.Lacey, W.J.Llope, T.Reposeur, A.M.Vander Molen, G.D.Westfall, W.K.Wilson, J.S.Winfield, J.Yee, S.J.Yennello, A.Nadasen, R.S.Tickle, E.Norbeck

Intermediate Mass Fragment Production in Central Collisions of Intermediate Energy Heavy Ions

NUCLEAR REACTIONS 45Sc(40Ar, X), E=35-115 MeV/nucleon; measured σ(fragment Z); deduced power-law parameter minimum.

doi: 10.1103/PhysRevLett.70.1924
Citations: PlumX Metrics


1992KR13      Phys.Rev. C46, 1416 (1992)

D.Krofcheck, W.Bauer, G.M.Crawley, S.Howden, C.A.Ogilvie, A.Vander Molen, G.D.Westfall, W.K.Wilson, R.S.Tickle, C.Djalali, C.Gale

Disappearance of Flow as a Probe of the Nuclear Equation of State

NUCLEAR REACTIONS 93Nb(93Nb, X), E=97, 145 MeV/nucleon; 139La(139La, X), E=100-160 MeV/nucleon; measured fragment in-plane transverse momentum spectra, multiplicity distributions; deduced flow disappearance as balance between attractive, repulsive scattering.

doi: 10.1103/PhysRevC.46.1416
Citations: PlumX Metrics


1989CE02      Phys.Lett. 227B, 336 (1989)

D.A.Cebra, W.Benenson, Y.Chen, E.Kashy, A.Pradhan, A.Vander Molen, G.D.Westfall, W.K.Wilson, D.J.Morrissey, R.S.Tickle, R.Korteling, R.L.Helmer

Two-Particle Correlations from 500 MeV p + Ag and Be

NUCLEAR REACTIONS Ag, Be(p, 2pX), (p, 2dX), (p, dαX), (p, pdX), (p, pαX), (p, 2tX), E=500 MeV; measured light (particle)(particle)-correlations; deduced reaction mechanism.

doi: 10.1016/0370-2693(89)90940-4
Citations: PlumX Metrics


1989KR11      Phys.Rev.Lett. 63, 2029 (1989)

D.Krofcheck, W.Bauer, G.M.Crawley, C.Djalali, S.Howden, C.A.Ogilvie, A.Vander Molen, G.D.Westfall, W.K.Wilson, R.S.Tickle, C.Gale

Disappearance of Flow in Heavy-Ion Collisions

NUCLEAR REACTIONS 139La(139La, X), E=50-130 MeV/nucleon; measured average in-plane transverse momentum vs c.m. rapidity; deduced flow disappearance.

doi: 10.1103/PhysRevLett.63.2029
Citations: PlumX Metrics


1988FO03      Phys.Rev. C38, 146 (1988)

D.Fox, D.A.Cebra, J.Karn, C.Parks, A.Pradhan, A.Vander Molen, J.van der Plicht, G.D.Westfall, W.K.Wilson, R.S.Tickle

Angular Correlations Near the Fermi Energy

NUCLEAR REACTIONS 197Au(12C, X), C(12C, X), E=40, 50 MeV/nucleon; measured σ(θ, E), (particle)(particle)(θ) for light particle; deduced source temperature.

doi: 10.1103/PhysRevC.38.146
Citations: PlumX Metrics


1985HA19      Phys.Rev. C32, 145 (1985)

B.E.Hasselquist, G.M.Crawley, B.V.Jacak, Z.M.Koenig, G.D.Westfall, J.E.Yurkon, R.S.Tickle, J.P.Dufour, T.J.M.Symons

Light-Particle-Complex-Fragment Coincidence Cross Sections from Intermediate Energy Nucleus-Nucleus Collisions

NUCLEAR REACTIONS 197Au, 27Al(12C, dX), (12C, tX), E=30 MeV/nucleon; measured inclusive σ(θp, Ep), σ(θd, Ed), σ(θt, Et). 197Au(40Ar, pX), (40Ar, dX), (40Ar, tX), (40Ar, 3HeX), (40Ar, αX), E=92 MeV/nucleon; measured inclusive σ(θp, Ep), σ(θd, Ed), σ(θt, Et), σ(θ(3He), E(3He)), σ(θα, Eα). Moving source model.

doi: 10.1103/PhysRevC.32.145
Citations: PlumX Metrics


1985WE14      Nucl.Instrum.Methods 238, 347 (1985)

G.D.Westfall, J.E.Yurkon, J.Van Der Plicht, Z.M.Koenig, B.V.Jacak, R.Fox, G.M.Crawley, M.R.Maier, B.E.Hasselquist, R.S.Tickle, D.Horn

A Logarithmic Detection System Suitable for a 4π Array

NUCLEAR REACTIONS 197Au(14N, X), E=35 MeV/nucleon; 58Ni(35Cl, X), E=230 MeV; 12C(12C, X), E=30 MeV/nucleon; measured fragment, charge spectra.

doi: 10.1016/0168-9002(85)90472-3
Citations: PlumX Metrics


1983JA07      Nucl.Phys. A402, 262 (1983)

J.Janecke, F.D.Becchetti, W.S.Gray, R.S.Tickle, E.Sugarbaker

Coulomb Displacement Energies and Decay Widths of Isobaric Analog States from Sm(3He, t) at θ = 0°

NUCLEAR REACTIONS 144,147,148,149,150,152,154Sm(3He, t), E=45.9 MeV; measured σ(Et, θ=0°). 144,147,148,149,150,152,154Eu deduced IAS, Coulomb displacement energies, deformation, decay widths. Enriched targets, magnetic spectrometer.

doi: 10.1016/0375-9474(83)90498-0
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC1311.


1982TI01      Nucl.Phys. A376, 309 (1982)

R.S.Tickle, W.S.Gray, R.D.Bent

Two-Proton Pickup in the Zirconium Region using the (6Li, 8B) Reaction

NUCLEAR REACTIONS 92,94,96,98,100Mo, 90,92,94Zr(6Li, 8B), E=90 MeV; measured σ(E(8B)), σ(θ). 88,90,92Sr, 90,92,94,96,98Zr deduced characteristics of strong transitions. Magnetic spectrometer, enriched target. DWBA analysis.

doi: 10.1016/0375-9474(82)90067-7
Citations: PlumX Metrics


1980TI02      Phys.Lett. 92B, 283 (1980)

R.S.Tickle, W.S.Gray, R.D.Bent

Correlation between (6Li, 8B) Two-Proton Pickup and (d, 6Li) α-Particle Pickup in the Zirconium Region

NUCLEAR REACTIONS 94,98Mo(6Li, 8B), E=90 MeV; measured σ(θ, E(8B)). 92,96Zr levels deduced excitation probability dependence on neutron number. Finite range DWBA, shell model.

doi: 10.1016/0370-2693(80)90264-6
Citations: PlumX Metrics


1979GR16      Z.Phys. A292, 281 (1979)

W.S.Gray, R.S.Tickle, R.D.Bent

First Observation of the (4He, 8B) Reaction

NUCLEAR REACTIONS 27Al, 66Zn(α, 8B), E=109 MeV; measured σ(θ). 23Ne deduced levels. 62Co deduced production σ.

doi: 10.1007/BF01547474
Citations: PlumX Metrics


1978TI01      Z.Phys. A284, 385 (1978)

R.S.Tickle, W.S.Gray, H.C.Griffin

Observation of a Decoupled Band in 123Cs

NUCLEAR REACTIONS 115In(12C, 4nγ), E=72 MeV; measured Eγ, Iγ, γγ-coin, γ(θ). 123Cs deduced levels. 123Ba deduced misassignment of transitions.

doi: 10.1007/BF01422105
Citations: PlumX Metrics


1976BE49      Nucl.Phys. A271, 77 (1976)

F.D.Becchetti, W.S.Gray, J.Janecke, E.R.Sugarbaker, R.S.Tickle

Isobaric Analog States of the Tin and Tellurium Isotopes Studied with the (3He, t) Reaction at θ(L) = 0°

NUCLEAR REACTIONS 112,114,116,117,118,119,120,122,124Sn, 124,125,126,128,130Te(3He, t), E=45.9 MeV; measured σ(Et, θ), θ=0°. 112,114,116,117,118,119,120,122,124Sb, 124,125,126,128,130I deduced IAS, Coulomb displacement energies, Γ. Enriched targets, magnetic spectrometer.

doi: 10.1016/0375-9474(76)90269-4
Citations: PlumX Metrics


1963BA13      Bull.Am.Phys.Soc. 8, No.4, 366, R3 (1963)

J.Bardwick, R.S.Tickle, W.C.Parkinson

Level Structure of Cr53 from the (d, p) Reaction

NUCLEAR STRUCTURE 53Cr; measured not abstracted; deduced nuclear properties.


1961BA06      Bull.Am.Phys.Soc. 6, No.3, 259, KA6 (1961)

J.Bardwick, R.S.Tickle, W.E.Barkinson

Deuteron Elastic Scattering Cross Sections


1961PA08      TID-13418, p.3 (1961)

W.C.Parkinson, R.S.Tickle

NUCLEAR STRUCTURE 24Na; measured not abstracted; deduced nuclear properties.


1961PA09      TID-13418, p.8 (1961)

W.C.Parkinson, R.S.Tickle

NUCLEAR STRUCTURE 25Mg, 26Mg, 27Mg; measured not abstracted; deduced nuclear properties.


1961PA10      TID-13418, p.14 (1961)

W.C.Parkinson, R.S.Tickle

Level Structure of A = 28

NUCLEAR STRUCTURE 28Al; measured not abstracted; deduced nuclear properties.


1961PA11      TID-13418, p.20 (1961)

W.C.Parkinson, R.S.Tickle

NUCLEAR STRUCTURE 32P; measured not abstracted; deduced nuclear properties.


1961PA12      TID-13418, p.25 (1961)

W.C.Parkinson, R.S.Tickle

NUCLEAR STRUCTURE 35S, 33S; measured not abstracted; deduced nuclear properties.


1961PA13      TID-13418, p.31 (1961)

W.C.Parkinson, R.S.Tickle

NUCLEAR STRUCTURE 36Cl, 38Cl; measured not abstracted; deduced nuclear properties.


1961PA14      TID-13418, p.33 (1961)

W.C.Parkinson, R.S.Tickle


1961PA15      TID-13418, p.35 (1961)

W.C.Parkinson, R.S.Tickle

NUCLEAR STRUCTURE 9Be; measured not abstracted; deduced nuclear properties.


1961TI01      Bull.Am.Phys.Soc. 6, No.3, 259, KA3 (1961)

R.S.Tickle, K.T.Hecht

Level Structure of Al28 from the (d, p) Reaction

NUCLEAR STRUCTURE 28Al; measured not abstracted; deduced nuclear properties.


1960FA06      Phys.Rev. 118, 535 (1960)

R.W.Fast, P.A.Flournoy, R.S.Tickle, W.D.Whitehead

Photoneutron Cross Sections of Li, N, and A

NUCLEAR STRUCTURE 7Li, 14N, 6Li; measured not abstracted; deduced nuclear properties.

doi: 10.1103/PhysRev.118.535
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 datasetM0214.


1960FA09      Contrib.Karlsruhe Photonuclear Conf., Karlsruhe, Germany, Paper A2 (1960)

R.W.Fast, P.A.Flournoy, R.S.Tickle, W.D.Whitehead

Photoneutron Cross Sections of Li, N and A

NUCLEAR STRUCTURE 7Li, 14N, 40Ar; measured not abstracted; deduced nuclear properties.


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