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NSR database version of April 26, 2024.

Search: Author = L.Csige

Found 28 matches.

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2022CS01      Eur.Phys.J. A 58, 14 (2022)

L.Csige, M.Csatlos, T.Faestermann, D.Habs, M.Hunyadi, A.J.Krasznahorkay, P.G.Thirolf, T.G.Tornyi, H.-F.Wirth

Fission resonances observed in the 237Np(d, pf) reaction and the fission barrier topology of 238Np

NUCLEAR REACTIONS 237Np(d, pF), E=12 MeV; measured reaction products. 238Np; deduced fission resonances. Comparison with TALYS-1.95 calculations, RIPL-3 values. The Tandem accelerator of the Maier-Leibnitz Laboratory in Garching.

doi: 10.1140/epja/s10050-022-00668-z
Citations: PlumX Metrics


2022KR05      Phys.Rev. C 106, L061601 (2022)

A.J.Krasznahorkay, A.Krasznahorkay, M.Begala, M.Csatlos, L.Csige, J.Gulyas, A.Krako, J.Timar, I.Rajta, I.Vajda, N.J.Sas

New anomaly observed in 12C supports the existence and the vector character of the hypothetical X17 boson

NUCLEAR REACTIONS 11B(p, e+e-), E=1.5-2.5 MeV; measured electron and positrons, energy-sum spectra and angular correlation; deduced anomalous excess of e+e- pairs around 155-160null from the decay of 17.2 MeV J=1- state in 12C via E1 transition. Extracted X17 boson branching ratio, mass of X17 particle; likely the same as X17 particle suggested by 2016Kr01 (Phys. Rev. Lett. 116, 042501). Scintillation detectors and double-sided silicon strip detectors (DSSD) at 2 MV Tandetron accelerator of ATOMKI (Debrecen, Hungary).

doi: 10.1103/PhysRevC.106.L061601
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Data from this article have been entered in the XUNDL database. For more information, click here.


2021KR08      Phys.Rev. C 104, 044003 (2021)

A.J.Krasznahorkay, M.Csatlos, L.Csige, J.Gulyas, A.Krasznahorkay, B.M.Nyako, I.Rajta, J.Timar, I.Vajda, N.J.Sas

New anomaly observed in 4He supports the existence of the hypothetical X17 particle

NUCLEAR REACTIONS 3H(p, e+e-)4He, E=510, 610, 900 keV; measured electron and positrons, energy-sum spectra and angular correlation of e+e- pairs using scintillation detectors and double-sided silicon strip detectors (DSSD) at the 2-MV Tandetron accelerator of ATOMKI, Debrecen; deduced anomalous excess of e+e- pairs around 115°, interpreted as creation and subsequent decay of a light particle during the direct capture process; extracted internal pair creation coefficient (IPCC), X17 boson branching ratio, mass of X17 particle with confidence level; likely the same as X17 particle suggested by 2016Kr01 (Phys. Rev. Lett. 116, 042501). 7Li(p, e+e-)8Be, E=441 keV; measured angular correlation of e+e- pairs for the 17.6-MeV, M1 transition in 8Be as a test of the experimental apparatus and methodology.

doi: 10.1103/PhysRevC.104.044003
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Data from this article have been entered in the XUNDL database. For more information, click here.


2019KR17      Acta Phys.Pol. B50, 675 (2019)

A.J.Krasznahorkay, M.Csatlos, L.Csige, D.Firak, J.Gulyas, A.Nagy, N.Sas, J.Timar, T.G.Tornyi, A.Krasznahorkay

On the X(17) Light-particle Candidate Observed in Nuclear Transitions

NUCLEAR REACTIONS 7Li, 3H(p, γ) E=450, 900, 1100 keV; measured reaction products, Eβ, Iβ, Eγ, Iγ; deduced total energy spectrum and angular correlation of the electron-positron pairs from transitions in 8Be and 4He, invariant mass distribution, branching ratio, neutral isoscalar particle mass.

doi: 10.5506/aphyspolb.50.675
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2017CH16      Acta Phys.Pol. B48, 559 (2017)

D.Choudhury, D.L.Balabanski, A.Krasznahorkay, L.Csige, J.Gulyas, M.Csatlos, P.Constantin, S.Coban

Prospectives of Photofission Studies with High-brilliance Narrow-width Gamma Beams at the New ELI-NP Facility

doi: 10.5506/APhysPolB.48.559
Citations: PlumX Metrics


2016KR01      Phys.Rev.Lett. 116, 042501 (2016)

A.J.Krasznahorkay, M.Csatlos, L.Csige, Z.Gacsi, J.Gulyas, M.Hunyadi, I.Kuti, B.M.Nyako, L.Stuhl, J.Timar, T.G.Tornyi, Zs.Vajta, T.J.Ketel, A.Krasznahorkay

Observation of Anomalous Internal Pair Creation in 8Be: A Possible Indication of a Light, Neutral Boson

NUCLEAR REACTIONS 7Li(p, γ), E=0.441, 1.03 MeV; measured reaction products, Eβ, Iβ, Eγ, Iγ; deduced total energy spectrum and angular correlation of the electron-positron pairs for the isovector magnetic dipole to the ground state transitions, invariant mass distribution, neutral isoscalar particle mass. Comparison with available data.

doi: 10.1103/PhysRevLett.116.042501
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Data from this article have been entered in the XUNDL database. For more information, click here.


2015CS01      Acta Phys.Pol. B46, 559 (2015)

L.Csige, M.Csatlos, T.Faestermann, J.Gulyas, D.Habs, A.Krasznahorkay, P.G.Thirolf, T.G.Tornyi, H.-F.Wirth

Transmission Resonance Spectroscopy of the Doubly Odd 238Np in (d, pf) Reaction

NUCLEAR REACTIONS 237Np(d, p), (d, F), E=12 MeV; measured reaction products; deduced fission probability.

doi: 10.5506/APhysPolB.46.559
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2015ES07      Phys.Rev. C 92, 044321 (2015)

M.E.Estevez Aguado, A.Algora, J.Agramunt, B.Rubio, J.L.Tain, D.Jordan, L.M.Fraile, W.Gelletly, A.Frank, M.Csatlos, L.Csige, Zs.Dombradi, A.Krasznahorkay, E.Nacher, P.Sarriguren, M.J.G.Borge, J.A.Briz, O.Tengblad, F.Molina, O.Moreno, M.Kowalska, V.N.Fedosseev, B.A.Marsh, D.V.Fedorov, P.L.Molkanov, A.N.Andreyev, M.D.Seliverstov, K.Burkard, W.Huller

Shapes of 192, 190Pb ground states from β-decay studies using the total-absorption technique

RADIOACTIVITY 190,192Pb(EC), (β+)[from U(p, X), E=1.4 GeV]; measured Eγ, Iγ, (x ray)γ-coin using total absorption spectrometer Lucrecia (TAS) at CERN-ISOLDE facility; deduced I(ϵ), I(ϵ+β+) feedings, BG(T) strength distributions, deformation for ground states. Comparison with QRPA calculations, and with previous experimental data.

doi: 10.1103/PhysRevC.92.044321
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Data from this article have been entered in the XUNDL database. For more information, click here.


2015FI10      Eur.Phys.J. A 51, 185 (2015)

D.Filipescu, A.Anzalone, D.L.Balabanski, S.S.Belyshev, F.Camera, M.La Cognata, P.Constantin, L.Csige, P.V.Cuong, M.Cwiok, V.Derya, W.Dominik, M.Gai, S.Gales, I.Gheorghe, B.S.Ishkhanov, A.Krasznahorkay, A.A.Kuznetsov, C.Mazzocchi, V.N.Orlin, N.Pietralla, M.Sin, C.Spitaleri, K.A.Stopani, O.Tesileanu, C.A.Ur, I.Ursu, H.Utsunomiya, V.V.Varlamov, H.R.Weller, N.V.Zamfir, A.Zilges

Perspectives for photonuclear research at the Extreme Light Infrastructure - Nuclear Physics (ELI-NP) facility

doi: 10.1140/epja/i2015-15185-9
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2014AL01      Hyperfine Interactions 223, 245 (2014)

A.Algora, D.Jordan, J.L.Tain, B.Rubio, J.Agramunt, L.Caballero, E.Nacher, A.B.Perez-Cerdan, F.Molina, E.Estevez, E.Valencia, A.Krasznahorkay, M.D.Hunyadi, J.Gulyas, A.Vitez, M.Csatlos, L.Csige, T.Eronen, J.Rissanen, A.Saastamoinen, I.D.Moore, H.Penttila, V.S.Kolhinen, K.Burkard, W.Huller, L.Batist, W.Gelletly, A.L.Nichols, T.Yoshida, A.A.Sonzogni, K.Perajarvi

Decay heat studies for nuclear energy

doi: 10.1007/s10751-012-0623-6
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2013CS01      Acta Phys.Pol. B44, 643 (2013)

L.Csige, D.M.Filipescu, J.Gulyas, M.Gunther, D.Habs, H.J.Karwowski, A.Krasznahorkay, G.C.Rich, P.G.Thirolf

Photofission of 238U Induced by a Quasi-monochromatic, Compton Backscattered γ Beam

NUCLEAR REACTIONS 238U(γ, F), E=4.7-6 MeV; measured fission products; deduced σ. Comparison with EMPIRE 3.1 calculations, available data.

doi: 10.5506/APhysPolB.44.643
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetL0179.


2013CS03      Phys.Rev. C 87, 044321 (2013)

L.Csige, D.M.Filipescu, T.Glodariu, J.Gulyas, M.M.Gunther, D.Habs, H.J.Karwowski, A.Krasznahorkay, G.C.Rich, M.Sin, L.Stroe, O.Tesileanu, P.G.Thirolf

Exploring the multihumped fission barrier of 238U via sub-barrier photofission

NUCLEAR REACTIONS 238U(γ, F), E=4.7-6.0 MeV; measured Eγ, Iγ, photofission σ(E) at the HIγS facility. 238U; deduced triple-humped fission barrier parameters using EMPIRE-3.1 computer code calculations. Comparison with previous experimental studies.

doi: 10.1103/PhysRevC.87.044321
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetL0179.


2013JO02      Phys.Rev. C 87, 044318 (2013)

D.Jordan, A.Algora, J.L.Tain, B.Rubio, J.Agramunt, A.B.Perez-Cerdan, F.Molina, L.Caballero, E.Nacher, A.Krasznahorkay, M.D.Hunyadi, J.Gulyas, A.Vitez, M.Csatlos, L.Csige, J.Aysto, H.Penttila, I.D.Moore, T.Eronen, A.Jokinen, A.Nieminen, J.Hakala, P.Karvonen, A.Kankainen, A.Saastamoinen, J.Rissanen, T.Kessler, C.Weber, J.Ronkainen, S.Rahaman, V.Elomaa, U.Hager, S.Rinta-Antila, T.Sonoda, K.Burkard, W.Huller, L.Batist, W.Gelletly, A.L.Nichols, T.Yoshida, A.A.Sonzogni, K.Perajarvi, A.Petrovici, K.W.Schmid, A.Faessler

Total absorption study of the β decay of 102, 104, 105Tc

RADIOACTIVITY 102,104,105Tc(β-)[from U(p, F), E=30, 50 MeV followed by mass separation]; measured Eγ, Iγ using the Total Absorption Gamma Spectrometer (TAGS) and JYFLTRAP Penning trap at IGISOL, Jyvaskyla facility; deduced β feedings to levels in 102,104,105Ru, β-strength distributions, Gamow-Teller strengths, average β and γ energies, effects on decay heat calculations. Comparison of deduced β feedings with those from high-resolution γ-ray measurements. Comparison of Gamow-Teller strengths with VAMPIR model calculations. Relevance to decay heat calculations in nuclear reactors.

NUCLEAR REACTIONS U(p, F)102Mo/102Tc/102Ru/104Tc/105Nb/ 105Mo/105Tc/105Ru, E=30, 50 MeV; measured yields using JYFLRTRAP Penning trap at IGISOL, Jyvaskyla facility.

doi: 10.1103/PhysRevC.87.044318
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Data from this article have been entered in the XUNDL database. For more information, click here.


2012CS01      Acta Phys.Pol. B43, 291 (2012)

L.Csige, M.Csatlos, T.Faestermann, J.Gulyas, D.Habs, R.Hertenberger, M.Hunyadi, A.Krasznahorkay, H.J.Maier, P.G.Thirolf, H.F.Wirth

High Resolution Spectroscopy in the Third Minimum of 232Pa

NUCLEAR REACTIONS 231Pa(d, pF)232Pa, E=12 MeV; measured reaction products. 232Pa; deduced fission probability and barrier parameters. Comparison with other experimental data.

doi: 10.5506/APhysPolB.43.291
Citations: PlumX Metrics


2012CS02      Phys.Rev. C 85, 054306 (2012)

L.Csige, M.Csatlos, T.Faestermann, J.Gulyas, D.Habs, R.Hertenberger, M.Hunyadi, A.Krasznahorkay, H.J.Maier, P.G.Thirolf, H.-F.Wirth

Transmission resonance spectroscopy in the third minimum of 232Pa

NUCLEAR REACTIONS 231Pa(d, pF), E=12 MeV; measured E(p), I(p), fission probability using the Garching Q3D spectrograph. 232Pa; deduced transmission fission resonances, J, π, level spacing of J=4 states, superdeformed and hyperdeformed rotational bands, inner and outer fission barrier heights, triple-humped fission barrier, excitation energy of the ground state of the third minimum. Evidence for hyperdeformation. Comparison of experimental fission barrier parameters with TALYS 1.2 nuclear reaction code calculations, and with previous studies.

doi: 10.1103/PhysRevC.85.054306
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2012TH02      Acta Phys.Pol. B43, 227 (2012)

P.G.Thirolf, L.Csige, M.Gunther, D.Habs, A.Krasznahorkay

Perspectives for Spectroscopy of Actinides with Highly Brilliant γ Beams

doi: 10.5506/APhysPolB.43.227
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2011AL21      J.Korean Phys.Soc. 59, 1479s (2011)

A.Algora, D.Jordan, J.L.Tain, B.Rubio, J.Agramunt, L.Caballero, E.Nacher, A.B.Perez-Cerdan, F.Molina, A.Krasznahorkay, M.D.Hunyadi, J.Gulyas, A.Vitez, M.Csatlos, L.Csige, J.Aysto, H.Penttila, S.Rinta-Antila, I.Moore, T.Eronen, A.Jokinen, A.Nieminen, J.Hakala, P.Karvonen, A.Kankainen, U.Hager, T.Sonoda, A.Saastamoinen, J.Rissanen, T.Kessler, C.Weber, J.Ronkainen, S.Rahaman, V.Elomaa, K.Burkard, W.Huller, L.Batist, W.Gelletly, T.Yoshida, A.L.Nichols, A.Sonzogni, K.Perajarvi

Improvements on Decay Heat Summation Calculations by Means of Total Absorption Gamma-ray Spectroscopy Measurements

RADIOACTIVITY 101Nb, 101,105Mo, 102,104,105,106,107Tc(β-)[from U(p, F), E=30-50 MeV]; measured decay products using TAGS (Total Absorption Gamma Spectrometer) with Penning trap at IGISOL (JYFLTRAP); deduced decay heat.

doi: 10.3938/jkps.59.1479
Citations: PlumX Metrics


2011CS04      J.Phys.:Conf.Ser. 312, 092022 (2011)

L.Csige, M.Csatlos, T.Faestermann, Z.Gacsi, J.Gulyas, D.Habs, R.Hertenberger, A.Krasznahorkay, R.Lutter, H.J.Maier, P.G.Thirolf, T.Tornyi, H.-F.Wirth

Hyperdeformed fission resonances and transition states observed in 232U

NUCLEAR REACTIONS 231Pa(3He, df), E=38.1 MeV; measured E(d), I(d, θ=350) using Q3D magnetic spectrograph and position-sensitive light-ion detector, fission fragments, (fragment)d-coin; deduced sharp fission hyperdeformed resonances, fission probability, rotational bands, fission fragments angular distribution for rotational bands; calculated fission fragments angular distribution for rotational bands.

doi: 10.1088/1742-6596/312/9/092022
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2010AL22      Phys.Rev.Lett. 105, 202501 (2010)

A.Algora, D.Jordan, J.L.Tain, B.Rubio, J.Agramunt, A.B.Perez-Cerdan, F.Molina, L.Caballero, E.Nacher, A.Krasznahorkay, M.D.Hunyadi, J.Gulyas, A.Vitez, M.Csatlos, L.Csige, J.Aysto, H.Penttila, I.D.Moore, T.Eronen, A.Jokinen, A.Nieminen, J.Hakala, P.Karvonen, A.Kankainen, A.Saastamoinen, J.Rissanen, T.Kessler, C.Weber, J.Ronkainen, S.Rahaman, V.Elomaa, S.Rinta-Antila, U.Hager, T.Sonoda, K.Burkard, W.Huller, L.Batist, W.Gelletly, A.L.Nichols, T.Yoshida, A.A.Sonzogni, K.Perajarvi

Reactor Decay Heat in 239Pu: Solving the γ Discrepancy in the 4-3000-s Cooling Period

RADIOACTIVITY 101Nb, 105Mo, 102,104,105,106,107Tc(β-) [from U(p, X), E=30, 50 MeV]; measured Eγ, Iγ, mass; deduced β-feeding probabilities, discrepancies for decay heat of 239Pu.

doi: 10.1103/PhysRevLett.105.202501
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Data from this article have been entered in the XUNDL database. For more information, click here.


2009CS01      Phys.Rev. C 80, 011301 (2009)

L.Csige, M.Csatlos, T.Faestermann, Z.Gacsi, J.Gulyas, D.Habs, R.Hertenberger, A.Krasznahorkay, R.Lutter, H.J.Maier, P.G.Thirolf, H.-F.Wirth

Hyperdeformed sub-barrier fission resonances observed in 232U

NUCLEAR REACTIONS 231Pa(3He, dF), E=38.1 MeV; measured Ed, (fission)(deuteron)-coin, angular distribution of fission fragments and fission probability. 232U; deduced barrier parameters, hyperdeformed fission resonances, third potential well and rotational band parameters.

doi: 10.1103/PhysRevC.80.011301
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC1717. Data from this article have been entered in the XUNDL database. For more information, click here.


2008VI02      Acta Phys.Pol. B39, 483 (2008)

A.Vitez, A.Krasznahorkay, J.Gulyas, M.Csatlos, L.Csige, Z.Gacsi, A.Krasznahorkay, Jr., B.M.Nyako, F.W.N.de Boer, T.J.Ketel, J.van Klinken

Anomalous Internal Pair Creation in 8Be as a Signature of the Decay of a New Particle

RADIOACTIVITY 8Be [from 7Li(p, γ), E=441 keV]; measured angular distribution of the e+e- pairs from the M1 decay of the 17.64 MeV state. Compared results to model calculations and previous measurement.


2007CS02      Acta Phys.Pol. B38, 1503 (2007)

L.Csige, M.Csatlos, T.Faestermann, Z.Gacsi, J.Gulyas, D.Habs, R.Hertenberger, M.Hunyadi, A.Krasznahorkay, R.Lutter, H.J.Maier, P.G.Thirolf, H.-F.Wirth

New Excited States and Fission Resonances in the Actinide Region

NUCLEAR REACTIONS 231Pa(d, pf), E=12 MeV; 231Pa(3He, df), E=38.1 MeV; measured Ep, Ed, fission fragment energies. Deduced prompt fission probabilities as a function of excitation energies.


2007HU16      Acta Phys.Pol. B38, 1479 (2007)

M.Hunyadi, A.M.van den Berg, N.Blasi, M.Csatlos, L.Csige, B.Davids, M.Fujiwara, U.Garg, J.Gulyas, M.N.Harakeh, M.A.de Huu, A.Krasznahorkay, D.Sohler, H.J.Wortche

Recent Results from the Decay Studies of High-Energy Isoscalar Giant Resonances

NUCLEAR REACTIONS 90Zr, 116Sn, 208Pb(α, α'n), E=200 MeV; measured measured σ, angular distributions. Deduced ISGDR direct-decay branching ratios.

Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO1510.


2005HU10      Acta Phys.Pol. B36, 1115 (2005)

M.Hunyadi, A.M.van den Berg, M.Csatlos, L.Csige, B.Davids, U.Garg, J.Gulyas, M.N.Harakeh, M.A.de Huu, A.Krasznahorkay, D.Sohler, H.J.Wortche

Overtones of isoscalar giant resonances studied in direct particle decay measurements

NUCLEAR REACTIONS 90Zr, 116Sn, 208Pb(α, α'n), E=200 MeV; 208Pb(α, α'p), E=200 MeV; measured Eα, σ(θ), pα-, nα-coin. 90Zr, 116Sn, 208Pb deduced isoscalar GDR parameters, particle decay features.


2004EL03      Phys.Lett. B 586, 34 (2004)

Z.Elekes, Zs.Dombradi, A.Krasznahorkay, H.Baba, M.Csatlos, L.Csige, N.Fukuda, Zs.Fulop, Z.Gacsi, J.Gulyas, N.Iwasa, H.Kinugawa, S.Kubono, M.Kurokawa, X.Liu, S.Michimasa, T.Minemura, T.Motobayashi, A.Ozawa, A.Saito, S.Shimoura, S.Takeuchi, I.Tanihata, P.Thirolf, Y.Yanagisawa, K.Yoshida

Decoupling of valence neutrons from the core in 16C

NUCLEAR REACTIONS 208Pb(16C, 16C'), E=52.7 MeV/nucleon; measured Eγ, Iγ, (particle)γ-coin, σ(θ). 16C deduced neutron and proton transition matrix elements, B(E2), charge-to-mass deformation ratio, excited state valence configuration.

doi: 10.1016/j.physletb.2004.02.022
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2004HU04      Nucl.Phys. A731, 49 (2004)

M.Hunyadi, C.Baumer, A.M.van den Berg, N.Blasi, M.Csatlos, L.Csige, B.Davids, U.Garg, J.Gulyas, M.N.Harakeh, M.de Huu, B.C.Junk, A.Krasznahorkay, S.Rakers, D.Sohler, H.J.Wortche

Particle decay of the isoscalar giant dipole resonance in 208Pb

NUCLEAR REACTIONS 208Pb(α, α'n), (α, α'p), E=200 MeV; measured En, Ep, Eα, nα-, pα-coin, σ(E, θ). 208Pb deduced branching ratios for direct-proton and direct-neutron decay of isoscalar GDR.

doi: 10.1016/j.nuclphysa.2003.11.018
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2003HU13      Phys.Lett. B 576, 253 (2003)

M.Hunyadi, A.M.van den Berg, N.Blasi, C.Baumer, M.Csatlos, L.Csige, B.Davids, U.Garg, J.Gulyas, M.N.Harakeh, M.A.de Huu, B.C.Junk, A.Krasznahorkay, S.Rakers, D.Sohler, H.J.Wortche

Direct proton decay of the isoscalar giant dipole resonance

NUCLEAR REACTIONS 208Pb(α, α'p), E=200 MeV; measured Eα, Ep, pα-coin, σ(E, θ). 208Pb deduced isoscalar GDR energy, width, direct proton decay features.

doi: 10.1016/j.physletb.2003.10.016
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2003KR23      Acta Phys.Hung.N.S. 18, 323 (2003)

A.Krasznahorkay, M.Csatlos, L.Csige, Y.Eisermann, T.Faestermann, Z.Gacsi, G.Graw, J.Gulyas, D.Habs, M.N.Harakeh, M.Heil, R.Hertenberger, F.Kappeler, A.Krasznahorkay, Jr., M.J.Maier, Z.Mate, R.Reifarth, P.G.Thirolf, J.Timar, H.F.Wirth

Hyperdeformation and Clustering in the Actinide Region

NUCLEAR REACTIONS 235U(d, pF), E=9.75 MeV; measured Ep, fission fragment spectra. 236U deduced hyperdeformed states, α-decay features. 232Th(n, F), E ≈ 1.6 MeV; measured fission fragments mass distributions, kinetic energy; deduced cluster effects.

doi: 10.1556/APH.18.2003.2-4.34
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