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NSR database version of April 27, 2024.

Search: Author = H.Le

Found 15 matches.

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2024LE01      Eur.Phys.J. A 60, 3 (2024)

H.Le, J.Haidenbauer, U.-G.Meissner, A.Nogga

Separation energies of light Λ hypernuclei and their theoretical uncertainties

NUCLEAR STRUCTURE 4,5He, 3H; calculated separation energies and uncertainties in Λ hypernuclei using few-body method within the Faddeev-Yakubovsky scheme and the no-core shell model. Comparison with available data.

doi: 10.1140/epja/s10050-023-01219-w
Citations: PlumX Metrics


2023HA13      Eur.Phys.J. A 59, 63 (2023)

J.Haidenbauer, U.-G.Meissner, A.Nogga, H.Le

Hyperon-nucleon interaction in chiral effective field theory at next-to-next-to-leading order

doi: 10.1140/epja/s10050-023-00960-6
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2023LE03      Phys.Rev. C 107, 024002 (2023)

H.Le, J.Haidenbauer, U.-G.Meissner, A.Nogga

Ab initio calculation of charge-symmetry breaking in A=7 and 8 Λ hypernuclei

NUCLEAR STRUCTURE 4,5H, 5,7He, 7,8Li, 7,8Be; calculated Λ separation energies for the hypernuclei systems, charge-symmetry breaking splittings, contributions to charge-symmetry breaking. Calculations are based on a hyperon-nucleon potential derived from chiral EFT at next-to-leading order. Jacobi no-core shell model. Comparison to experimental data.

doi: 10.1103/PhysRevC.107.024002
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2022MA63      Phys.Rev. C 106, 064002 (2022)

P.Maris, R.Roth, E.Epelbaum, R.J.Furnstahl, J.Golak, K.Hebeler, T.Huther, H.Kamada, H.Krebs, H.Le, Ulf-G.Meissner, J.A.Melendez, A.Nogga, P.Reinert, R.Skibinski, J.P.Vary, H.Witala, T.Wolfgruber

Nuclear properties with semilocal momentum-space regularized chiral interactions beyond N2LO

NUCLEAR STRUCTURE 14,16,18,20,22,24,26O, 40,48Ca; calculated ground-state energies, point-proton radii. 4,6,8He, 6Li, 10Be, 10,12B, 12C; calculated ground state energies. 10,12B, 12C; calculated low-lying levels, J, π. Chiral EFT calculations with semilocal momentum-space regularized NN potentials up to fourth leading order N4LO.

NUCLEAR REACTIONS 2H(n, X), E=70, 135, 200 MeV; calculated σ(E), σ(θ), vector- and tensor analyzing power. Comparison to experimental data.

doi: 10.1103/PhysRevC.106.064002
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2021LE14      Eur.Phys.J. A 57, 217 (2021)

H.Le, J.Haidenbauer, U.-G.Meissner, A.Nogga

S-shell ΛΛ hypernuclei based on chiral interactions

NUCLEAR STRUCTURE 5,6He, 4H; calculated hypernuclei ground state wave functions, binding and separation energies using the Jacobi no-core shell model (J-NCSM) to study double-strangeness.

doi: 10.1140/epja/s10050-021-00522-8
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2021LE27      Eur.Phys.J. A 57, 339 (2021)

H.Le, J.Haidenbauer, U.-G.Meissner, A.Nogga

A=4-7 Ξ hypernuclei based on interactions from chiral effective field theory

NUCLEAR STRUCTURE A=4-7; analyzed available data. 4NN, 4,5,7H; deduced hypernuclei bound states, separation energies, phase shifts.

doi: 10.1140/epja/s10050-021-00653-y
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2020LE01      Phys.Lett. B 801, 135189 (2020)

H.Le, J.Haidenbauer, U.-G.Meissner, A.Nogga

Implications of an increased Λ-separation energy of the hypertriton

NUCLEAR STRUCTURE 3H, 4,5He, 7Li; calculated hypernuclei energy spectra, separation and binding energies.

doi: 10.1016/j.physletb.2019.135189
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2020LE18      Eur.Phys.J. A 56, 301 (2020)

H.Le, J.Haidenbauer, U.-G.Meissner, A.Nogga

Jacobi no-core shell model for p-shell hypernuclei

NUCLEAR STRUCTURE 4H, 4,5,6He, 6,7Li; calculated hypernuclei ground states, the similarity renormalization group (SRG) to soften the nucleon-nucleon and hyperon-nucleon interactions; deduced basis states and the transition coefficients.

doi: 10.1140/epja/s10050-020-00314-6
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2014LE05      Eur.Phys.J. A 50, 14 (2014)

H.K.Le, M.Rho

Topology change and tensor forces for the EoS of dense baryonic matter

doi: 10.1140/epja/i2014-14014-1
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2012KU27      Prog.Theor.Phys.(Kyoto), Suppl. 196, 346 (2012)

S.Kubono, N.B.Dam, S.Hayakawa, H.Hashimoto, D.Kahl, H.Yamaguchi, Y.Wakabayashi, T.Teranishi, N.Iwasa, T.Komatsubara, S.Kato, A.Chen, S.Cherubini, S.H.Choi, I.S.Hahn, J.J.He, H.K.Le, C.S.Lee, Y.K.Kwon, S.Wanajo, H.-T.Janka

Alpha-Cluster Dominance in the αp Process in Explosive Hydrogen Burning

NUCLEAR REACTIONS 4He(11C, p), E(cm)=1-4.5 MeV; 4He(21Na, p), E(cm)=2-7 MeV; measured reaction products; deduced σ, resonances, reaction for αp process. Comparison with available data.

doi: 10.1143/PTPS.196.346
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2003LE36      Braz.J.Phys. 33, 328 (2003)

A.Leistenschneider, T.Aumann, K.Boretzky, L.F.Canto, B.V.Carlson, D.Cortina, U.Datta Pramanik, Th.W.Elze, H.Emling, H.Geissel, A.Grunschloss, K.Helariutta, M.Hellstrom, M.S.Hussein, S.Ilievski, K.Jones, J.V.Kratz, R.Kulessa, H.K.Le, E.Lubkiewicz, G.Munzenberg, R.Palit, P.Reiter, C.Scheidenberger, K.-H.Schmidt, H.Simon, K.Summerer, E.Wajda, W.Walus

Fragmentation of Exotic Oxygen Isotopes

NUCLEAR STRUCTURE C, Pb(17O, X), (18O, X), (19O, X), (20O, X), (21O, X), E ≈ 600, 1700 MeV/nucleon; analyzed fragment yields. Abrasion-ablation models.

doi: 10.1590/s0103-97332003000200033
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1992VA19      Bull.Rus.Acad.Sci.Phys. 56, 631 (1992)

E.V.Vasilieva, V.D.Kulik, E.V.Kulikov, N.A.Lebedev, H.K.Le, A.F.Novgorodov, Yu.P.Popov, A.M.Sukhovoi, D.K.Fam, V.A.Khitrov, Yu.V.Holnov

Application of the γγ-Coincidence Method with Coinciding Pulse Amplitude Summation for Study of Radioactive Nucleus Decay Schemes: γ-Transition Scheme in 170Lu → 170Yb Decay

RADIOACTIVITY 170Lu(EC), (β+); measured γγ-coin, Iγ, two quantum cascades. 170Yb deduced transitions.


1991BO51      Izv.Akad.Nauk SSSR, Ser.Fiz. 55, 841 (1991); Bull.Acad.Sci.USSR, Phys.Ser. 55, No.5, 8 (1991)

S.T.Boneva, E.V.Vasileva, V.D.Kulik, H.K.Le, Yu.P.Popov, A.M.Sukhovoi, D.K.Pham, V.A.Khitrov, Y.V.Kholnov

Construction of Complex γ-Decay Schemes of Compound Nuclear States on the Basis of Spectroscopic Data from the Reactions (n, 2γ) and (nγ)

NUCLEAR REACTIONS 186W, 178Hf(n, γ), E=thermal; measured γγ-coin, summing amplitude. 179Hf, 187W deduced γ-decay scheme, multiplets.


1990BO49      Izv.Akad.Nauk SSSR, Ser.Fiz. 54, 822 (1990); Bull.Acad.Sci.Ussr, Phys.Ser. 54, No.5, 5 (1990)

S.T.Boneva, E.V.Vasileva, V.D.Kulik, H.H.Le, Yu.P.Popov, A.M.Sukhovoi, V.A.Khitrov, Yu.V.Kholnov

Cascade γ-Decay of the Compound State of 177Yb

NUCLEAR REACTIONS 176Yb(n, γ), E=thermal; measured γγ-coin. 177Yb deduced levels, J, π, I(γγ).


1990BO50      Izv.Akad.Nauk SSSR, Ser.Fiz. 54, 836 (1990); Bull.Acad.Sci.Ussr, Phys.Ser. 54, No.5, 19 (1990)

S.T.Boneva, E.V.Vasileva, V.D.Kulik, H.H.Le, Yu.P.Popov, A.Sukhovoi, V.A.Khitrov, Yu.V.Kholnov

The Spin of the Compound State of 180Hf Excited by Thermal-Neutron Capture in 179Hf

NUCLEAR REACTIONS 179Hf(n, γ), E=thermal; measured γγ-coin. 180Hf deduced levels, possible J, π, role in capture process.


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Note: The following list of authors and aliases matches the search parameter H.Le: , H.D.LE, H.H.LE, H.K.LE