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G Hagen

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Articles 102
Citations 4204
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Recent Articles
1.
Acharya B, Hu B, Bacca S, Hagen G, Navratil P, Papenbrock T
Phys Rev Lett . 2024 Jun; 132(23):232504. PMID: 38905663
The magnetic dipole transition strength B(M1) of ^{48}Ca is dominated by a single resonant state at an excitation energy of 10.23 MeV. Experiments disagree about B(M1) and this impacts our...
2.
Kondo Y, Achouri N, Al Falou H, Atar L, Aumann T, Baba H, et al.
Nature . 2023 Nov; 623(7988):E13. PMID: 37935927
No abstract available.
3.
Kondo Y, Achouri N, Al Falou H, Atar L, Aumann T, Baba H, et al.
Nature . 2023 Aug; 620(7976):965-970. PMID: 37648757
Subjecting a physical system to extreme conditions is one of the means often used to obtain a better understanding and deeper insight into its organization and structure. In the case...
4.
Giraud S, Zamora J, Zegers R, Bazin D, Ayyad Y, Bacca S, et al.
Phys Rev Lett . 2023 Jun; 130(23):232301. PMID: 37354417
For the first time, the (d,^{2}He) reaction was successfully used in inverse kinematics to extract the Gamow-Teller transition strength in the β^{+} direction from an unstable nucleus. The new technique...
5.
Novario S, Lonardoni D, Gandolfi S, Hagen G
Phys Rev Lett . 2023 Feb; 130(3):032501. PMID: 36763401
The neutron skin of atomic nuclei impacts the structure of neutron-rich nuclei, the equation of state of nucleonic matter, and the size of neutron stars. Here we predict the neutron...
6.
Kaur S, Kanungo R, Horiuchi W, Hagen G, Holt J, Hu B, et al.
Phys Rev Lett . 2022 Oct; 129(14):142502. PMID: 36240396
The root mean square radii of the proton density distribution in ^{16-24}O derived from measurements of charge changing cross sections with a carbon target at ∼900A  MeV together with the...
7.
Malbrunot-Ettenauer S, Kaufmann S, Bacca S, Barbieri C, Billowes J, Bissell M, et al.
Phys Rev Lett . 2022 Jan; 128(2):022502. PMID: 35089728
Collinear laser spectroscopy is performed on the nickel isotopes ^{58-68,70}Ni, using a time-resolved photon counting system. From the measured isotope shifts, nuclear charge radii R_{c} are extracted and compared to...
8.
Sobczyk J, Acharya B, Bacca S, Hagen G
Phys Rev Lett . 2021 Aug; 127(7):072501. PMID: 34459650
We present a consistent ab initio computation of the longitudinal response function R_{L} in ^{40}Ca using the coupled-cluster and Lorentz integral transform methods starting from chiral nucleon-nucleon and three-nucleon interactions....
9.
Novario S, Gysbers P, Engel J, Hagen G, Jansen G, Morris T, et al.
Phys Rev Lett . 2021 May; 126(18):182502. PMID: 34018796
We use coupled-cluster theory and nuclear interactions from chiral effective field theory to compute the nuclear matrix element for the neutrinoless double-β decay of ^{48}Ca. Benchmarks with the no-core shell...
10.
Bagchi S, Kanungo R, Tanaka Y, Geissel H, Doornenbal P, Horiuchi W, et al.
Phys Rev Lett . 2020 Jun; 124(22):222504. PMID: 32567915
We report the measurement of reaction cross sections (σ_{R}^{ex}) of ^{27,29}F with a carbon target at RIKEN. The unexpectedly large σ_{R}^{ex} and derived matter radius identify ^{29}F as the heaviest...