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Related papers: Continuum effects in neutron-drip-line oxygen isot…

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We have developed a novel ab initio Gamow in-medium similarity renormalization group (Gamow IMSRG) in the complex-energy Berggren framework. The advanced Gamow IMSRG is capable of describing the resonance and nonresonant continuum…

Nuclear Theory · Physics 2019-06-26 B. S. Hu , Q. Wu , Z. H. Sun , F. R. Xu

The open quantum system formulation of the nuclear shell model, the so-called Gamow Shell Model (GSM), is a multi-configurational SM that employs a single-particle basis given by the Berggren ensemble consisting of Gamow states and the…

Nuclear Theory · Physics 2009-11-11 N. Michel , W. Nazarewicz , M. Ploszajczak , J. Rotureau

A sensitive correlation between the ground-state properties of light kaonic nuclei and the symmetry energy at high densities is constructed under the framework of relativistic mean-field theory. Taking oxygen isotopes as an example, we see…

Nuclear Theory · Physics 2018-01-09 Rong-Yao Yang , Si-Na Wei , Wei-Zhou Jiang

The correlated basis function theory is applied to the study of medium-heavy doubly closed shell nuclei with different wave functions for protons and neutrons and in the jj coupling scheme. State dependent correlations including tensor…

Nuclear Theory · Physics 2009-11-11 C. Bisconti , F. Arias de Saavedra , G. Co' , A. Fabrocini , .

The structure of the unbound $^{15}$F nucleus is investigated using the inverse kinematics resonant scattering of a radioactive $^{14}$O beam impinging on a CH$_2$ target. The analysis of $^{1}$H($^{14}$O,p)$^{14}$O and…

We extend the recently proposed ab initio no-core shell model with continuum to include three-nucleon (3N) interactions beyond the few-body domain. The extended approach allows for the assessment of effects of continuum degrees of freedom…

We have performed shell-model calculations for the even- and odd-mass N=82 isotones, focusing attention on low-energy states. The single-particle energies and effective two-body interaction have been both determined within the framework of…

Nuclear Theory · Physics 2009-12-17 L. Coraggio , A. Covello , A. Gargano , N. Itaco , T. T. S. Kuo

Variational calculations of ground-state properties of $^4$He, $^{16}$O, and $^{40}$Ca are carried out employing realistic phenomenological two- and three-nucleon potentials. The trial wave function includes two- and three-body correlations…

Nuclear Theory · Physics 2017-09-04 D. Lonardoni , A. Lovato , Steven C. Pieper , R. B. Wiringa

The structure of the nucleus 25F was investigated through in-beam {\gamma}-ray spectroscopy of the fragmentation of 26Ne and 27,28Na ion beams. Based on the particle-{\gamma} and particle-{\gamma}{\gamma} coincidence data, a level scheme…

We combine few- and many-body degrees of freedom in a model applicable to both bound and continuum states and adaptable to different subfields of physics. We formulate a self-consistent three-body model for a core-nucleus surrounded by two…

Nuclear Theory · Physics 2017-06-07 D. Hove , E. Garrido , P. Sarriguren , D. V. Fedorov , H. O. U. Fynbo , A. S. Jensen , N. T. Zinner

We employ interactions from chiral effective field theory and compute the binding energies and low-lying excitations of calcium isotopes with the coupled-cluster method. Effects of three-nucleon forces are included phenomenologically as…

Nuclear Theory · Physics 2012-07-19 G. Hagen , M. Hjorth-Jensen , G. R. Jansen , R. Machleidt , T. Papenbrock

Emergent properties such as nuclear saturation and deformation, and the effects on shell structure due to the proximity of the scattering continuum and particle decay channels are fascinating phenomena in atomic nuclei. In recent years, ab…

Nuclear Theory · Physics 2016-05-19 G. Hagen , M. Hjorth-Jensen , G. R. Jansen , T. Papenbrock

The existence of multi-neutron systems has always been a debatable question. Indeed, both inter-nucleon correlations and a large continuum coupling occur in these states. We then employ the ab-initio no-core Gamow shell model to calculate…

Nuclear Theory · Physics 2019-11-19 Jian Guo Li , Nicolas Michel , Bai Shan Hu , Wei Zuo , Fu Rong Xu

We report converged results for the ground and excited states and matter density of 16-O using realistic two-body nucleon-nucleon interactions and coupled-cluster methods and formalism developed in quantum chemistry. Most of the binding is…

Nuclear Theory · Physics 2009-11-11 M. Wloch , D. J. Dean , J. R. Gour , M. Hjorth-Jensen , K. Kowalski , T. Papenbrock , P. Piecuch

Recent experiments have confirmed that the neutron-rich isotopes $^{28,29}$F belong to the so-called island of inversion (IOI), a region of the nuclear chart around $Z=10$ and $N=20$ where nuclear structure deviates from the standard shell…

Nuclear Theory · Physics 2023-02-21 K. Fossez , J. Rotureau

Background: Odd-odd nuclei, around doubly closed shells, have been extensively used to study proton-neutron interactions. However, the evolution of these interactions as a function of the binding energy, ultimately when nuclei become…

Nuclear Experiment · Physics 2017-11-15 M. Vandebrouck , A. Lepailleur , O. Sorlin , T. Aumann , C. Caesar , M. Holl , V. Panin , F. Wamers , S. R. Stroberg , J. D. Holt , F. De Oliveira Santos , H. Alvarez-Pol , L. Atar , V. Avdeichikov , S. Beceiro-Novo , D. Bemmerer , J. Benlliure , C. A. Bertulani , S. K. Bogner , J. M. Boillos , K. Boretzky , M. J. G. Borge , M. Caamano , E. Casarejos , W. Catford , J. Cederkäll , M. Chartier , L. Chulkov , D. Cortina-Gil , E. Cravo , R. Crespo , U. Datta Pramanik , P. Diaz Fernandez , I. Dillmann , Z. Elekes , J. Enders , O. Ershova , A. Estrade , F. Farinon , L. M. Fraile , M. Freer , D. Galaviz , H. Geissel , R. Gernhauser , J. Gibelin , P. Golubev , K. Göbel , J. Hagdahl , T. Heftrich , M. Heil , M. Heine , A. Heinz , A. Henriques , H. Hergert , A. Hufnagel , A. Ignatov , H. T. Johansson , B. Jonson , J. Kahlbow , N. Kalantar-Nayestanaki , R. Kanungo , A. Kelic-Heil , A. Knyazev , T. Kröll , N. Kurz , M. Labiche , C. Langer , T. Le Bleis , R. Lemmon , S. Lindberg , J. Machado , J. Marganiec , F. M. Marques , A. Movsesyan , E. Nacher , M. Najafi , E. Nikolskii , T. Nilsson , C. Nociforo , S. Paschalis , A. Perea , M. Petri , S. Pietri , R. Plag , R. Reifarth , G. Ribeiro , C. Rigollet , M. Röder , D. Rossi , D. Savran , H. Scheit , A. Schwenk , H. Simon , I. Syndikus , J. Taylor , O. Tengblad , R. Thies , Y. Togano , P. Velho , V. Volkov , A. Wagner , H. Weick , C. Wheldon , G. Wilson , J. S. Winfield , P. Woods , D. Yakorev , M. Zhukov , A. Zilges , K. Zuber

Structure of weakly bound/unbound light nuclei is often related to the low-energy decay channels involving composite particles like deuteron or ${\alpha}$-particle. These channels are essential to understand the appearance of light nuclei…

Nuclear Theory · Physics 2019-05-24 A. Mercenne , N. Michel , M. Ploszajczak

We present ab initio predictions for ground and excited states of doubly open-shell fluorine and neon isotopes based on chiral two- and three-nucleon interactions. We use the in-medium similarity renormalization group, in both flow-equation…

Nuclear Theory · Physics 2016-05-10 S. R. Stroberg , H. Hergert , J. D. Holt , S. K. Bogner , A. Schwenk

We describe bound states, resonances and elastic scattering of light ions using a $\delta$-shell potential. Focusing on low-energy data such as energies of bound states and resonances, charge radii, asymptotic normalization coefficients,…

Nuclear Theory · Physics 2019-11-11 Benjamin K. Luna , T. Papenbrock
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