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NSR database version of May 21, 2024.

Search: Author = A.E.Pillay

Found 14 matches.

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1995PI15      J.Radioanal.Nucl.Chem. 199, 125 (1995)

A.E.Pillay, M.Peisach

Charge-Induced X-Ray Spectrometry with Deuterons and Alpha-Particles in the Energy Range 700-2000 keV

NUCLEAR REACTIONS Zn, 19F(α, X), E=0.8-1.1 MeV; 59Co, C(α, X), E=0.7 MeV; Cu, C, 1H(d, X), E=0.7 MeV; Cu, C, 1H(α, X), E=1.1 measured charge-induced X-ray yields.

ATOMIC PHYSICS Zn, 19F(α, X), E=0.8-1.1 MeV; 59Co, C(α, X), E=0.7 MeV; Cu, C, 1H(d, X), E=0.7 MeV; Cu, C, 1H(α, X), E=1.1 MeV; measured charge-induced X-ray yields.

doi: 10.1007/BF02162475
Citations: PlumX Metrics


1995PI17      J.Radioanal.Nucl.Chem. 200, 53 (1995)

A.E.Pillay, M.Peisach

Production of Charge-Induced X-Rays During PIXE Studies using Light and Heavy Ion-Beams

NUCLEAR REACTIONS Cr, Fe, Cu, Zn, 19F(p, X), E ≤ 2 MeV; C, 1H, O(d, X), E=0.5-2 MeV; Cr, Zn, Cr, Mn, Fe, Co, Cd(3He, X), E=1-4 MeV; measured X-ray yield enhancement factor vs E. Fe, 19F(16O, X), (20Ne, X), E ≤ 1.2 MeV; measured X-ray yield invariance vs E; deduced potential build up on targets role.

ATOMIC PHYSICS Cr, Fe, Cu, Zn, 19F(p, X), E ≤ 2 MeV; C, 1H, O(d, X), E=0.5-2 MeV; Cr, Zn, Cr, Mn, Fe, Co, Cd(3He, X), E=1-4 MeV; measured X-ray yield enhancement factor vs E. Fe, 19F(16O, X), (20Ne, X), E ≤ 1.2 MeV; measured X-ray yield invariance vs E; deduced potential build up on targets role.

doi: 10.1007/BF02164821
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1994MB01      Nucl.Instrum.Methods Phys.Res. B85, 138 (1994)

R.C.M.Mboweni, C.A.Pineda, M.Peisach, A.E.Pillay

A PIXE Study of Abnormal X-Rays from Binary Fluorides with Protons in the Range 0.4-2 MeV

NUCLEAR REACTIONS Zn, Cr, Fe, Cu, 19F(p, X), E=0.4-2 MeV; measured X-ray yields; deduced binary fluorides high X-ray yield sources. High purity Cr, Fe, Cu, Zn fluoride targets.

doi: 10.1016/0168-583X(94)95801-7
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1994PE13      Nucl.Instrum.Methods Phys.Res. B85, 100 (1994)

M.Peisach, C.A.Pineda, A.E.Pillay

The Measurement of Enhanced PIXE Yields with 3He2+ Ions

doi: 10.1016/0168-583X(94)95793-2
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1994PE14      Nucl.Instrum.Methods Phys.Res. B85, 142 (1994)

M.Peisach, C.A.Pineda, A.E.Pillay

The Application of High Resolution Deuteron-Induced Prompt γ-Ray Spectrometry to the Analysis of Some Transition Elements

NUCLEAR REACTIONS Ti, V, Cr, 55Mn, 59Co, Ni, Cu, Zn(d, X), E=5 MeV; measured prompt γ-spectra; deduced sample transition metal content estimation related features.

doi: 10.1016/0168-583X(94)95802-5
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1994PE30      J.Radioanal.Nucl.Chem. 188, 43 (1994)

M.Peisach, C.A.Pineda, A.E.Pillay

A Study of Deuteron-Induced Delayed X-Rays from Some Transition Elements

ATOMIC PHYSICS V, Fe, Ti, 59Co, Ni, Cu, Zn(d, X), E=5 MeV; measured E X-ray; deduced suitability to activation analysis.

doi: 10.1007/BF02164981
Citations: PlumX Metrics


1994PI14      J.Radioanal.Nucl.Chem. 188, 453 (1994)

A.E.Pillay, M.Peisach

Charge-Induced X-Ray Yields from Some Metal Salts with Proton and Alpha Beams

ATOMIC PHYSICS Fe, 19F, C, O, Cu, Co, Zn, P(p, X), E=700, 2000 keV; Fe, 19F, C, O, Cu, Co, Zn, P(α, X), E=1000 keV; measured X-ray yields.

NUCLEAR REACTIONS Fe, 19F, C, O, Cu, Co, Zn, P(p, X), E=700, 200 keV; Fe, 19F, C, O, Cu, Co, Zn, P(α, X), E=1000 keV; measured X-ray yields.

doi: 10.1007/BF02164738
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1992PI09      Nucl.Instrum.Methods Phys.Res. B64, 465 (1992)

A.E.Pillay, M.Peisach

The Application of Charged Particle Spectrometry to 3He Activation Analysis of Light Elements

NUCLEAR REACTIONS B, C, N, O(3He, X), E=2 MeV; measured prompt charged particle spectra; deduced carbon content of steel specimens. Thick targets.

doi: 10.1016/0168-583X(92)95517-U
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1991PI13      J.Radioanal.Nucl.Chem. 153, 313 (1991)

A.E.Pillay

The Application of High Resolution Delayed K X-Ray Spectrometry to Proton, Alpha, Thermal and Fast Neutron Activation Analysis: A comparison of sensitivities

ATOMIC PHYSICS Ru, Pd, Os, Ir, Pt, Au, Sm, Eu, Dy, Ho; measured delayed X-ray spectra following p, α, n activation.

doi: 10.1007/BF02165663
Citations: PlumX Metrics


1990PI08      J.Radioanal.Nucl.Chem. 144, 417 (1990)

A.E.Pillay, N.Mashilo

Pt and Au Analysis by Delayed X-Ray Spectrometry After Fast Neutron Activation

NUCLEAR REACTIONS 194,196,198,190,192Pt(n, γ), 192,194Pt(n, p), E=fast; measured delayed X-ray spectra.

RADIOACTIVITY 191,193,195m,197m,197,199Pt, 198mAu, 192,194Ir [from Pt irradiation by fast neutrons]; measured delayed X-ray spectra.

doi: 10.1007/BF02217089
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1990PI19      J.Radioanal.Nucl.Chem. 141, 393 (1990)

A.E.Pillay, C.Mboweni

The Determination of Eu and Sm by Application of X-Ray Spectrometry to Isotope-Source Activation Analysis

NUCLEAR REACTIONS 152,154Sm, 151,153Eu(n, γ), E=thermal; measured delayed X-ray spectra. Thermalized beam from 252Cf source.

doi: 10.1007/BF02035805
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1990WA11      Nucl.Instrum.Methods Phys.Res. B45, 75 (1990)

J.I.W.Watterson, A.E.Pillay, P.Nailand

Selective Activation Analysis with Ion-Beam-Tailored Neutron Spectra - A Comparison between the Reactions 7Li(p, n)7Be and 9Be(p, n)9B

NUCLEAR REACTIONS 27Al(n, γ), 27Al, 28Si(n, p), 197Au(n, n'), E < 7 MeV; measured σ(E). Ion-beam tailored neutron spectra.

doi: 10.1016/0168-583X(90)90788-V
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1984PI07      Int.J.Appl.Radiat.Isotop. 35, 353 (1984)

A.E.Pillay, D.K.Bewley

Elemental Analysis using Charged-Particle Induced Prompt γ Rays

NUCLEAR REACTIONS 7Li, 19F, 23Na(p, p'γ), (p, nγ), Ca, Pb, Cl(p, X), 56Fe(p, γ), (p, nγ), 57Fe(p, p'γ), E=8 MeV; 19F(α, α'), (α, nα), (α, 2n), (α, d), (α, n), 23Na(α, α'), (α, n), (α, d), 35Cl(α, p), (α, n), 56Fe(α, d), (α, nd), (α, n), 54Fe(α, p), (α, γ), 204Pb(α, α'), (α, 2n), Ca, Li(α, X), E=32 MeV; 19F(d, d'), (d, 2n), 23Na(d, p), (d, α), (d, d'), 37Cl(d, n), 41Ca(d, γ), 56Fe(d, γ), (d, p), (d, n), (d, α), 54Fe(d, γ), (d, d'), (d, αγ), 58Fe(d, α), 57Fe(d, d'), Ca, Li, Pb(d, X), E=16 MeV; measured Eγ, Iγ.

doi: 10.1016/0020-708X(84)90040-1
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1983PI07      Int.J.Appl.Radiat.Isotop. 34, 1571 (1983)

A.E.Pillay, D.K.Bewley

Analysis of the Rare Stable Isotopes of Carbon, Nitrogen and Oxygen Using Charged-Particle Induced Prompt γ-Rays

NUCLEAR REACTIONS 13C, 17O(p, γ), (p, p'γ), 13C(p, αγ), 17,18O(p, nγ), E=8 MeV; 17,16O(d, γ), 18O, 12C, 15N(d, pγ), 18O(d, nγ), 18O(d, αγ), E=16 MeV; 13C, 16,17O(α, pγ), 18,16,17O(α, dγ), 15N, 16,18O(α, nγ), 17O, 15,14N(α, γ), 13C(α, α'γ), E=32 MeV; measured Eγ, Iγ. Low energy prompt γ measurement technique.

doi: 10.1016/0020-708X(83)90001-7
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