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Search: Author = J.Bisplinghoff

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2016BE25      Phys.Rev. C 94, 034618 (2016)

F.Bellemann, A.Berg, J.Bisplinghoff, G.Bohlscheid, J.Ernst, C.Henrich, F.Hinterberger, R.Ibald, R.Jahn, R.Joosten, K.Kilian, A.Kozela, H.Machner, A.Magiera, J.Munkel, P.von Neumann-Cosel, P.von Rossen, H.Schnitker, K.Scho, J.Smyrski, R.Tolle, C.Wilkin

Experimental study of the pd(dp) → 3He ππ reactions close to threshold

NUCLEAR REACTIONS 1H(d, 3Heπ+π-), 2H(p, 3Heπ+π-), at Q<100 MeV; measured 3He using high-resolution spectrograph Big Kar, and charged pion spectra using MOMO detector at COSY accelerator facility in Julich, ΔE-E and time-of-flight (TOF) measurements for particle identification, differential σ as function of kinetic energy of pions; deduced estimate of π0π0 production. Comparison with previous experimental data, and with predictions of two-step model.

doi: 10.1103/PhysRevC.94.034618
Citations: PlumX Metrics


2007BE03      Phys.Rev. C 75, 015204 (2007)

F.Bellemann, A.Berg, J.Bisplinghoff, G.Bohlscheid, J.Ernst, C.Henrich, F.Hinterberger, R.Ibald, R.Jahn, R.Joosten, K.Kilian, A.Kozela, H.Machner, A.Magiera, J.Munkel, P.von Neumann-Cosel, P.von Rossen, H.Schnitker, K.Scho, J.Smyrski, R.Tolle, C.Wilkin, and the COSY-MOMO Collaboration

Experimental study of the pd → 3He K+K- and pd → 3He φ reactions close to threshold

NUCLEAR REACTIONS 2H(p, K+K-), E ≈ threshold; measured prompt and φ-meson production associated kaon pair spectra, σ(E, θ).

doi: 10.1103/PhysRevC.75.015204
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2006RO21      Eur.Phys.J. A 28, 115 (2006)

H.Rohdjess, M.Altmeier, F.Bauer, J.Bisplinghoff, R.Bollmann, K.Busser, M.Busch, O.Diehl, F.Dohrmann, H.P.Engelhardt, J.Ernst, P.D.Eversheim, K.O.Eyser, O.Felden, R.Gebel, A.Gross, R.Gross-Hardt, F.Hinterberger, R.Langkau, J.Lindlein, R.Maier, F.Mosel, D.Prasuhn, P.von Rossen, N.Scheid, M.Schulz-Rojahn, F.Schwandt, V.Schwarz, W.Scobel, H.-J.Trelle, K.Ulbrich, E.Weise, A.Wellinghausen, K.Woller, R.Ziegler

Upper limits on resonance contributions to proton-proton elastic scattering in the c.m. mass range 2.05-2.85 GeV/c2

NUCLEAR REACTIONS 1H(p, p'), E=0.45-2.5 GeV; analyzed σ(θ, E), widths; deduced upper limit of resonance contributions. S-matrix element analysis with Breit-Wigner term.

doi: 10.1140/epja/i2006-10025-9
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2005AL01      Eur.Phys.J. A 23, 351 (2005)

M.Altmeier, F.Bauer, J.Bisplinghoff, K.Busser, M.Busch, T.Colberg, L.Demirors, H.P.Engelhardt, P.D.Eversheim, K.O.Eyser, O.Felden, R.Gebel, M.Glende, J.Greiff, F.Hinterberger, E.Jonas, H.Krause, T.Lindemann, J.Lindlein, B.Lorentz, R.Maier, R.Maschuw, A.Meinerzhagen, D.Prasuhn, H.Rohdjess, D.Rosendaal, P.von Rossen, N.Schirm, V.Schwarz, W.Scobel, H.-J.Trelle, K.Ulbrich, E.Weise, A.Wellinghausen, R.Ziegler, and the EDDA Collaboration

Excitation functions of the analyzing power in elastic proton-proton scattering from 0.45 to 2.5 GeV

NUCLEAR REACTIONS 1H(p, p), E=0.45-2.5 GeV; measured analyzing powers vs energy, angle. Polarized target, comparisons with previous results.

doi: 10.1140/epja/i2004-10081-1
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO0681.


2005BA50      Phys.Rev. C 71, 054002 (2005)

F.Bauer, J.Bisplinghoff, K.Busser, M.Busch, T.Colberg, C.Dahl, L.Demirors, P.D.Eversheim, K.O.Eyser, O.Felden, R.Gebel, J.Greiff, F.Hinterberger, E.Jonas, H.Krause, C.Lehmann, J.Lindlein, R.Maier, A.Meinerzhagen, C.Pauly, D.Prasuhn, H.Rohdjess, D.Rosendaal, P.von Rossen, N.Schirm, W.Scobel, K.Ulbrich, E.Weise, T.Wolf, R.Ziegler, and the EDDA Collaboration

Excitation functions of spin correlation parameters ANN, ASS, and ASL in elastic p(pol)p(pol) scattering between 0.45 and 2.5 GeV

NUCLEAR REACTIONS 1H(polarized p, p), E=0.45-2.5 GeV; measured spin correlation coefficients vs energy, angle; deduced scattering phase shifts, scattering amplitudes. Polarized target.

doi: 10.1103/PhysRevC.71.054002
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO1696.


2003BA23      Phys.Rev.Lett. 90, 142301 (2003)

F.Bauer, J.Bisplinghoff, K.Busser, M.Busch, T.Colberg, L.Demirors, C.Dahl, P.D.Eversheim, O.Eyser, O.Felden, R.Gebel, J.Greiff, F.Hinterberger, E.Jonas, H.Krause, C.Lehmann, J.Lindlein, R.Maier, A.Meinerzhagen, C.Pauly, D.Prasuhn, H.Rohdjess, D.Rosendaal, P.von Rossen, N.Schirm, W.Scobel, K.Ulbrich, E.Weise, T.Wolf, R.Ziegler, and the EDDA Collaboration

Measurement of Spin-Correlation Parameters ANN, ASS, and ASL, at 2.1 GeV in Proton-Proton Elastic Scattering

NUCLEAR REACTIONS 1H(polarized p, p), E=2.1 GeV; measured spin-correlation parameters; deduced scattering amplitudes. Polarized target. Comparison with previous results.

doi: 10.1103/PhysRevLett.90.142301
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2003RO23      Eur.Phys.J. A 18, 555 (2003)

H.Rohdjess, F.Bauer, J.Bisplinghoff, K.Busser, M.Busch, T.Colberg, L.Demirors, C.Dahl, P.D.Eversheim, O.Eyser, O.Felden, R.Gebel, J.Greiff, F.Hinterberger, E.Jonas, H.Krause, C.Lehmann, J.Lindlein, R.Maier, A.Meinerzhagen, C.Pauly, D.Prasuhn, D.Rosendaal, P.von Rossen, N.Schirm, W.Scobel, K.Ulbrich, E.Weise, T.Wolf, R.Ziegler

Cross-sections and spin observables in proton-proton elastic scattering: Results from EDDA at COSY

NUCLEAR REACTIONS 1H(polarized p, p), E=0.8-2.5 GeV; measured σ(θ), polarization observables. Comparison with model predictions.

doi: 10.1140/epja/i2002-10282-6
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1999BE60      Phys.Rev. C60, 061002 (1999)

F.Bellemann, A.Berg, J.Bisplinghoff, G.Bohlscheid, J.Ernst, C.Henrich, F.Hinterberger, R.Ibald, R.Jahn, L.Jarczyk, R.Joosten, A.Kozela, H.Machner, A.Magiera, R.Maschuw, T.Mayer-Kuckuk, G.Mertler, J.Munkel, P.von Neumann-Cosel, D.Rosendaal, P.von Rossen, H.Schnitker, K.Scho, J.Smyrski, A.Strzalkowski, R.Tolle, C.Wilkin, and the COSY-MOMO Collaboration

Pion-Pion p-Wave Dominance in the pd → 3He π+π- Reaction Near Threshold

NUCLEAR REACTIONS 2H(p, π+π-), E=546 MeV; measured σ(θ), σ(E); deduced pion-pion p-wave dominance. Kinematically complete experiment.

doi: 10.1103/PhysRevC.60.061002
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1998BA22      Nucl.Phys. A631, 542c (1998)

S.Bavink, F.Bellemann, A.Berg, J.Bisplinghoff, G.Bohlscheid, J.Ernst, C.Henrich, F.Hinterberger, R.Ibald, R.Jahn, L.Jarczyk, R.Joosten, A.Kozela, H.Machner, A.Magiera, R.Maschuw, T.Mayer-Kuckuk, G.Mertler, J.Munkel, P.von Neumann-Cosel, D.Rosendaal, P.von Rossen, H.Schnitker, K.Scho, J.Smyrski, A.Strazalkowski, R.Tolle, R.Wurzinger

Exclusive Near Threshold Two-Pion Production with MOMO Experiment at COSY

NUCLEAR REACTIONS 2H(p, π+π-), E not given; measured two-pion invariant mass spectra, σ(θ). Kinematically complete data.

doi: 10.1016/S0375-9474(98)00064-5
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1996BE99      Acta Phys.Pol. B27, 2945 (1996)

F.Bellemann, A.Berg, J.Bisplinghoff, G.Bohlscheid, J.Ernst, R.Frascaria, C.Henrich, F.Hinterberger, R.Ibald, R.Jahn, L.Jarczyk, R.Joosten, A.Kozela, U.Kuhn, H.Machner, A.Magiera, R.Maschuw, T.Mayer-Kuckuk, G.Mertler, B.Metsch, J.Munkel, P.von Neumann-Cosel, T.von Oepen, H.R.Petry, D.Rosendaal, P.von Rossen, K.Scho, F.Schwandt, R.Siebert, J.Smyrski, A.Strzalkowski, R.Tolle, R.Wurzinger, R.Ziegler

Two-Pion Production at MOMO


1996WU04      Phys.Lett. 374B, 283 (1996)

R.Wurzinger, R.Siebert, R.Jahn, A.Kozela, T.von Oepen, F.Roudot, J.Bisplinghoff, M.-A.Duval, J.Ernst, R.Frascaria, F.Hinterberger, R.Joosten, C.Lippert, F.Plouin, W.Spang, E.Warde

Observation of η' and φ Meson Production Very Close to Threshold in the pd → 3HeX Reaction

NUCLEAR REACTIONS 2H(p, X), E=1.3-1.8 GeV; measured σ(θ(3He)) vs momentum, threshold η'-, φ-meson production amplitudes squared. Two-step model analysis.

doi: 10.1016/0370-2693(96)00221-3
Citations: PlumX Metrics


1995WU02      Phys.Rev. C51, R443 (1995)

R.Wurzinger, R.Siebert, J.Bisplinghoff, M.A.Duval, J.Ernst, R.Frascaria, F.Hinterberger, M.Al Jaghoub, R.Jahn, R.Joosten, A.Kozela, C.Lippert, T.von Oepen, F.Plouin, F.Roudot, W.Spang, E.Warde, C.Wilkin

Near-Threshold Production of (Omega) Mesons in the pd → 3He(Omega) Reaction

NUCLEAR REACTIONS 2H(p, 3HeX), E=1.28-1.9 GeV; measured σ(θ), θ=180°; deduced final-state interaction between omega → π+π-π0 and 3He near threshold, width of omega.

doi: 10.1103/PhysRevC.51.R443
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1994BI09      Phys.Rev. C50, 1611 (1994)

J.Bisplinghoff

Preequilibrium α Emission in the Exciton Model

NUCLEAR REACTIONS 61Ni(α, α'), E not given; 54Fe(p, p'), (p, α), E=62 MeV; 58Ni(p, αX), E=90 MeV; 54Fe(p, αX), E=29 MeV; 54Fe(n, αX), E=14.8 MeV; 93Nb(p, αX), E=19.9-44.3 MeV; 90Zr(p, αX), E=90 MeV; 89Y(p, αX), E=62 MeV; analyzed α-emission data. Exciton model, α-cluster nucleons correlation requirement.

doi: 10.1103/PhysRevC.50.1611
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1993ST06      Phys.Rev. C47, 1647 (1993)

S.Stamer, W.Scobel, W.B.Amian, R.C.Byrd, R.C.Haight, J.L.Ullmann, R.W.Bauer, M.Blann, B.A.Pohl, J.Bisplinghoff, R.Bonetti

Double Differential Cross Sections for Neutron Emission Induced by 256 MeV and 800 MeV Protons

NUCLEAR REACTIONS 7Li, 27Al, Zr, Pb(p, xn), E=256, 800 MeV; measured σ(θ, E); deduced reaction mechanism. Intranuclear cascade, statistical multi-step, hybrid models.

doi: 10.1103/PhysRevC.47.1647
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC0511.


1987BI01      Phys.Rev. C35, 821 (1987)

J.Bisplinghoff, H.Keuser

Angular Momentum Effects in Preequilibrium Cluster Emission

NUCLEAR REACTIONS 61Ni(α, p), (α, α'), E=50.7 MeV; 53Cr(12C, p), (12C, α), E=82.1 MeV; 51V(14N, p), (14N, α), E=96.4 MeV; calculated preequilibrium emission σ ratio. 65Zn deduced cluster emission mechanism.

doi: 10.1103/PhysRevC.35.821
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1987BL09      Z.Phys. A326, 429 (1987)

M.Blann, J.Bisplinghoff

Numerical Test of Approximations in the Hybrid Precompound Decay Model

NUCLEAR REACTIONS 93Nb(n, n'), (n, p), E=14.7, 45, 90 MeV; calculated angle integrated σ. Hybrid model.


1986BI15      Phys.Rev. C 33, 1569 (1986)

J.Bisplinghoff

Configuration mixing in preequilibrium reactions: A new look at the hybrid-exciton controversy

doi: 10.1103/PhysRevC.33.1569
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1982BL19      Phys.Rev. C26, 1471 (1982)

M.Blann, D.Akers, T.A.Komoto, F.S.Dietrich, L.F.Hansen, J.G.Woodworth, W.Scobel, J.Bisplinghoff, B.Sikora, F.Plasil, R.L.Ferguson

Saturation Analysis as a Test of Statistical Fission in Heavy Ion Reactions

NUCLEAR REACTIONS 120,122Sn(56Fe, X), E=330-456 MeV; measured σ(evaporation residue θ), σ(fragment θ) vs mass; deduced statistical fission decay yield limit. 176Os deduced fission barrier vs J.

doi: 10.1103/PhysRevC.26.1471
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1982SI01      Phys.Rev. C25, 686 (1982)

B.Sikora, J.Bisplinghoff, M.Blann, W.Scobel, M.Beckerman, F.Plasil, R.L.Ferguson, J.Birkelund, W. Wilcke

Parameter Scaling Test of a Dynamic Nucleus-Nucleus Collision Theory

NUCLEAR REACTIONS, Fission 62Ni, 116Sn, 141Pr(35Cl, X), (35Cl, F), E=155-300 MeV; measured σ(evaporation residue), σ(fission) vs E. Dynamic model analysis.

doi: 10.1103/PhysRevC.25.686
Citations: PlumX Metrics


1982SI04      Phys.Rev. C25, 885 (1982)

B.Sikora, M.Blann, W.Scobel, J.Bisplinghoff, M.Beckerman

Fusion Excitation Function of 58Ni + 62Ni at 215-275 MeV

NUCLEAR REACTIONS 62Ni(58Ni, X), E=215-275 MeV; measured σ(evaporation residue) vs E; deduced fusion barrier, radius. Potential models.

doi: 10.1103/PhysRevC.25.885
Citations: PlumX Metrics


1982SI05      Phys.Rev. C25, 1446 (1982)

B.Sikora, W.Scobel, M.Beckerman, J.Bisplinghoff, M.Blann

Measurement and Statistical Analyses of Fission and Fusion Excitation Functions for 35Cl on 62Ni, 116Sn, and 141Pr up to E(lab) = 215 MeV

NUCLEAR REACTIONS, Fission 62Ni, 116Sn, 141Pr(35Cl, X), (35Cl, F), E=200, 215 MeV; measured σ(evaporation residue θ), σ(fragment θ); deduced statistical fission parameters. Statistical rotating liquid drop model.

doi: 10.1103/PhysRevC.25.1446
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1981KL06      Nucl.Phys. A370, 205 (1981)

J.Kleinfeller, J.Bisplinghoff, J.Ernst, T.Mayer-Kuckuk, G.Baur, B.Hoffmann, R.Shyam, F.Rosel, D.Trautmann

Study of Inclusive Proton Spectra from Low Energy Deuteron Reactions in Terms of Spectator Break-Up and Coulomb Dissociation of the Projectile

NUCLEAR REACTIONS 27Al, 62Ni, 93Nb, 119Sn, 181Ta, 232Th(d, pX), E=15 MeV; measured σ(Ep), σ(θ). Solid-state counter telescopes.

doi: 10.1016/0375-9474(81)90073-7
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1980SI04      Phys.Rev. C21, 614 (1980)

B.Sikora, M.Blann, W.Scobel, J.Bisplinghoff, M.Beckerman

Comparisons of Experimental and Theoretical Nucleus-Nucleus Potentials for Heavy-Ion Reactions

NUCLEAR REACTIONS 24Mg, 27Al, 40Ca(32S, X), E=67-132 MeV; 27Al, 58,62,64Ni, 90Zr, 116Sn(35Cl, X), E=70-170 MeV; 116Sn, 141Pr(35Cl, X), E=135-170 MeV; analyzed fusion σ(E); deduced fusion barriers, radii. Proximity potential, Yukawa-plus-exponential model, modified Woods-Saxon potential.

doi: 10.1103/PhysRevC.21.614
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1979SI20      Phys.Rev. C20, 2219 (1979)

B.Sikora, J.Bisplinghoff, W.Scobel, M.Beckerman, M.Blann

Fusion of 58,60,62Ni with 113-170 MeV 40Ca Ions

NUCLEAR REACTIONS 62,58Ni(40Ca, X), E=113-170 MeV; measured evaporation residue σ(E).

doi: 10.1103/PhysRevC.20.2219
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1978BI01      Phys.Rev. C17, 177 (1978)

J.Bisplinghoff, P.David, M.Blann, W.Scobel, T.Mayer-Kuckuk, J.Ernst, A.Mignerey

35Cl-Induced Fission and Fissionlike Reactions on 58,62Ni, 112,116,120,124Sn, and 141Pr

NUCLEAR REACTIONS 58,62Ni, 112,116,120,124Sn, 141Pr(35Cl, F), E=155-170 MeV; measured σ(E, Z, θ); deduced total fission σ. Gas proportional/solid state counter telescopes.

doi: 10.1103/PhysRevC.17.177
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1978PA17      Nucl.Phys. A311, 141 (1978)

J.Pampus, J.Bisplinghoff, J.Ernst, T.Mayer-Kuckuk, J.Rama Rao, G.Baur, F.Rosel, D.Trautmann

Inclusive Proton Spectra from Deuteron Break-up: Theory and Experiment

NUCLEAR REACTIONS 27Al, 62Ni, 93Nb, 119Sn, 181Ta(d, pX), E=25.5 MeV; measured continuous spectra of protons, angle-integrated cross sections dσ/dϵ, angular distributions. Solid-state counter telescopes.

doi: 10.1016/0375-9474(78)90506-7
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1978SC03      Z.Phys. A284, 343 (1978)

W.Scobel, J.Bisplinghoff, M.Blann, A.Mignerey, P.David, J.Ernst, T.Mayer-Kuckuk

Elastic Scattering of 35Cl from 27Al, 58,62Ni, 116,120,124Sn and 141Pr

NUCLEAR REACTIONS 27Al, 58,62Ni, 116,120,124Sn, 141Pr(35Cl, 35Cl), E=100-170 MeV; measured σ(E, θ); deduced optical model parameters, interaction radii.

doi: 10.1007/BF01406807
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1977BI06      Phys.Rev. C16, 1058 (1977)

J.Bisplinghoff, A.Mignerey, M.Blann, P.David, W.Scobel

Statistical Analysis of Heavy-Ion-Induced Fission Excitation Functions

NUCLEAR REACTIONS 62Ni, 116Sn, 141Pr(35Cl, F), E=155-170 MeV; calculated σ(E). Statistical model.

doi: 10.1103/PhysRevC.16.1058
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1977DA14      Nucl.Phys. A287, 179 (1977)

P.David, J.Bisplinghoff, M.Blann, T.Mayer-Kuckuk, A.Mignerey

Evaporation Residue Excitation Functions for 35Cl Induced Reactions of 112,120Sn and 141Pr

NUCLEAR REACTIONS 112,120Sn, 141Pr(35Cl, X), E=135-170 MeV; measured evaporation residue cross sections, fission cross sections; deduced complete fusion cross sections σcf(E), fusion radii, fusion barriers. Enriched targets. Gas-proportional-solid-state detector telescopes.

doi: 10.1016/0375-9474(77)90570-X
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1977HA24      Nucl.Instrum.Methods 143, 519 (1977)

A.Hardt, J.Bisplinghoff, J.Ernst, R.Lohr, H.Machner, T.Mayer-Kuckuk

On-Line Apparatus Bandit for Half-Life Determinations of Short-Lived Neutron Deficient Isotopes

RADIOACTIVITY 174,175,176,180Re; measured T1/2.

doi: 10.1016/0029-554X(77)90241-5
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1976BI08      Nucl.Phys. A269, 147 (1976)

J.Bisplinghoff, J.Ernst, R.Lohr, T.Mayer-Kuckuk, P.Meyer

Continuous Particle Spectra and Angular Distributions from Different Entrance Channels Forming 65Zn* at 37.4 MeV Excitation

NUCLEAR REACTIONS 63Cu(d, X), E=24.7 MeV; 62Ni(3He, X), E=24.3 MeV; 61Ni(α, X), E=35.5 MeV; measured continuous spectra of 3He, p, d, t, α, angle integrated σ(θ). Solid state counter telescopes.

doi: 10.1016/0375-9474(76)90403-6
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1974BI12      Nucl.Phys. A228, 180 (1974)

J.Bisplinghoff, J.Ernst, T.Mayer-Kuckuk, P.Jahn, C.Mayer-Boricke

Analysis of (Particle, xn) Reactions on Tantalum and Gold (III). Excitation Functions of d-Induced Reactions on 181Ta from 10 to 80 MeV and Equilibrium Statistical Analysis

NUCLEAR REACTIONS 181Ta(d, xn), X=5-8, 181Ta(d, p), (d, 2p), (d, 4np), (d, 4nα), (d, 6nα), E=10-80 MeV; measured σ(E). Activation method.

doi: 10.1016/0375-9474(74)90454-0
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetA0283.


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