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241
World new facilities for radioactive isotope beams
Published 2014-03-01“…These facilities are expected to provide opportunities to study nuclear structure, astrophysical nuclear processes and nuclear matter with large proton-neutron imbalance in grate detail. …”
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242
Nuclear enthalpies
Published 2015-01-01“…Bag model and RMF calculations show the modifications of nucleon mass, nucleon radius and a Parton Distribution Function (PDF) of Nuclear Matter (NM) above the saturation point originated from the pressure correction.…”
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243
Dynamical description of heavy-ion collisions at Fermi energies
Published 2016-01-01“…Starting from fundamental concepts tested on nuclear matter, we build up a microscopic description which addresses finite systems and applies to experimental observables.…”
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244
Recent heavy ion results from the ATLAS experiment
Published 2017-01-01“…The ATLAS experiment at the LHC has undertaken a broad physics program to probe and characterize the hot nuclear matter created in relativistic lead-lead collisions. …”
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245
Nucleon structure observables with PANDA
Published 2017-01-01“…Topics like hadron spectroscopy in the charmonium mass region, the property of hadrons inside nuclear matter, hypernuclear physics, or nucleon properties using electromagnetic processes are part of the physics program of PANDA. …”
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246
Open heavy flavour at the CERN-LHC
Published 2014-04-01“…The p-Pb data give an access to investigate cold nuclear matter effects.…”
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247
Constraints on the nuclear Equation of State from heavy ion reaction dynamics
Published 2023-01-01“…Heavy ion collisions allow one to create and explore, in laboratory experiments, transient states of nuclear matter under several conditions of density, temperature and charge asymmetry. …”
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248
Dibaryons – a new state of matter?
Published 2014-01-01“…Moreover, the existence of dibaryons has also an impact on the equation of state for nuclear matter.…”
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249
The symmetry energy, neutron skin thickness and isovector dipole response of neutron-rich nuclei
Published 2015-01-01“…The isotopic evolution of the relationship between the symmetry energy at saturation density of nuclear matter (J), neutron skin thickness (ΔR) and relevant observables related to isovector dipole excitations in neutron rich 116−136Sn isotopes has been investigated in the framework of relativistic nuclear energy density functional theory. …”
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250
LIABILITY OF THE CARRIER FOR NUCLEAR DAMAGE WITH SPECIAL REFERENCE TO CONVENTION ON SUPPLEMENTARY COMPENSATION FOR NUCLEAR DAMAGE
Published 2008-01-01“…Considering extremly dangerous nature of nuclear matter, amendments to the existing regulation concerning the liability for compensation of nuclear damage were found necessary. …”
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251
Setting nonperturbative uncertainties on finite-temperature properties of neutron matter
Published 2020-05-01“…Since proper theoretical uncertainties at finite T are still generally lacking, the band provided here represents a first step toward setting first-principles constraints on thermal aspects of the nuclear matter equation of state.…”
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252
Toward the System Size Dependence of Anisotropic Flow in Heavy-Ion Collisions at <inline-formula><math display="inline"><semantics><msqrt><msub><mi>s</mi><mrow><mi>N</mi><mi>N</mi>...
Published 2023-06-01“…The most stringent constraints currently available on the high-density EOS of symmetric nuclear matter come from the present measurements of directed (<inline-formula><math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><semantics><msub><mi>v</mi><mn>1</mn></msub></semantics></math></inline-formula>) and elliptic flow (<inline-formula><math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><semantics><msub><mi>v</mi><mn>2</mn></msub></semantics></math></inline-formula>) signals of protons in Au + Au collisions. …”
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253
Evidence of oblate-prolate shape coexistence in the strongly-deformed nucleus 119Cs
Published 2021-11-01Get full text
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254
Review of recent heavy flavor measurements in STAR
Published 2017-01-01“…Heavy-ion collisions at RHIC provide a unique environment to study the behavior of nuclear matter under extreme conditions. In particular, heavy quarks, which are produced during the early stages of a collision, provide an exceptional probe in understanding the hot and dense medium created in such collisions. …”
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255
Quarkonium measurements in heavy-ion collisions with the STAR experiment
Published 2018-01-01“…The J/ψ and ϒ production measured in p+p collisions provide new baselines for similar measurements in Au+Au collisions, while the measurements in p+Au collisions can help quantify the cold nuclear matter effects. The J/ψ υ2 is measured in both U+U and Au+Au collisions to place constraints on the amount of J/ψ arising from recombination of deconfined charm and anti-charm pairs. …”
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256
Neutron Star Physics and EOS
Published 2016-01-01“…They will constrain the nuclear matter symmetry energy, which controls the neutron star matter pressure and the interior composition, and will influence the interpretation of nuclear experiments. …”
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257
Neutron clusters in nuclear systems
Published 2023-07-01“…Moreover, neutron clusters composed purely of neutrons could serve as a mini prototype of neutron matter to study the still elusive properties of the extremely neutron-rich nuclear matter, building a bridge between finite nuclei and neutron stars. …”
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258
Recent progress in EDF-based methods applied to nuclear properties
Published 2014-03-01“…Achievements from large to small nuclear systems are depicted: equation of state of nuclear matter, heavy and light nuclei. Dynamical aspects such as nuclear excitations, decay and reactions are also presented. …”
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259
Hybrid stars with large strange quark cores
Published 2022-01-01“…The hadronic phase consists of an equation of state (EoS) with presently accepted nuclear matter properties and the quark model is constrained by the vacuum properties of several light mesons. …”
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260
The nucleon microscopic optical potential based on the Skyrme interaction
Published 2017-01-01“…The nucleon microscopic optical potential based on the conventional and extended Skyrme interactions are achieved by the single-particle Green function method through nuclear matter approximation and local density approximation. …”
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