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Hoang Dang Khoa Nguyen (IJCLab)22/09/2026 19:10Poster
Recent advances in high-precision experimental techniques, such as the QUARTET collaboration with muonic atom spectroscopy, are pushing the boundaries of our ability to measure the absolute charge radii and structural properties of light nuclei. However, extracting fundamental physics from these high-precision measurements requires equally precise, first-principles theoretical inputs. Here, I...
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Mme Marah Jbayli (GANIL)22/09/2026 19:10Poster
The observed matter–antimatter asymmetry in the Universe remains one of the major open questions in modern physics. The Matter’s Origin from RadioActivity experiment (MORA) aims to answer this question by searching for CP violation by measuring the so-called D correlation parameter from nuclear beta decay. This parameter is sensitive to time-reversal symmetry violation and therefore to CP...
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Afonso SIMOES DOS SANTOS VICENTE (IJCLab)22/09/2026 19:10Poster
Radioactive molecules have recently emerged as precision probes for anomalous electromagnetic moments, possibly offering unprecedented sensitivity to parity violation and time reversal symmetry violation [1]. In current experiments at radioactive ion beam facilities, the high temperature of the different molecular degrees of freedom is a crucial limiting factor for sensitive measurements. To...
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Silvia Bara (IKS, KU Leuven, Belgium)22/09/2026 19:10Poster
Most of the known unstable nuclei undergo one of the main decay channels by emitting α/β particles, or γ rays. In some cases, however, more rare and exotic phenomena, like proton radioactivity, cluster radioactivity or β-delayed fission, emerge and characterise different regions of the nuclear chart.
Neutron-deficient nuclei approaching the proton drip-line start having negative proton...
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M. Victor Dumenil (LPC Caen)22/09/2026 19:10Poster
Nuclear beta decay and electron capture allow us to probe the Standard Model (SM) and search for new physics in competitive and complementary ways to the LHC. In particular, beta decay can be extremely sensitive to exotic scalar and tensor currents at the TeV scale through precision measurements. This sensitivity shows up most clearly in the Fierz interference term, $b_F$, which is linearly...
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M. Oscar Le Noan (IPHC Strasbourg)22/09/2026 19:10Poster
The 48Cr nucleus stands as a paradigmatic example of a nuclear rotor within the pf-shell.
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Available shell-model and mean-field calculations for this nucleus consistently
reveal features of well-deformed systems: a rotational-type energy spectrum,
a bell-shaped trend in B(E2; 2+->0+) transitions across the Cr isotopic chain (peaking at 48Cr),
and significant ground-state deformation... -
Skyy Pineda (Laboratoire de Physique Corpusculaire de Caen)22/09/2026 19:15Poster
The S$^3$-Low Energy Branch (S$^{3}$-LEB) was designed as a low-energy radioactive beam experiment that incorporates in-gas-jet laser resonance ionization spectroscopy (IGLIS)[1], mass spectrometry (PILGRIM)[2], and decay spectroscopy (SEASON)[3,4]. This combination of experimental techniques provides a unique capability to produce, purify, and characterize low-energy radioactive ion beams...
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Nitin Mahavar (School of Physical Sciences, UM-DAE Centre for Excellence in Basic Sciences, University of Mumbai, Vidyanagari Campus, Santacruz East, Mumbai - 400098, INDIA)22/09/2026 19:15Poster
Excitations across the Z=20 shell gap ($1d_{3/2} - 1f_{7/2}$) have been studied within the framework of the cranked relativistic mean field (RMF) model (Physics Reports 322, 1 (1999)). A systematic increase in the discrepancy between theoretical predictions and experimental shell gap energy differences was observed with increasing isospin asymmetry. To address this limitation, the RMF...
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Zixuan Yue (University of York)22/09/2026 19:15Poster
Nuclei near doubly magic shell closures are key benchmarks for different theoretical models, as their properties in these regions often exhibit sharp discontinuities. In the lead region ($Z=82$), isotopic chains exhibit a pronounced increase in mean-square charge radii when crossing the neutron shell closure at $N=126$. Although this “kink” feature is systematically observed, its physical...
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Hemantika SENGAR (GANIL)22/09/2026 19:20Poster
The $^{57}$Ni nucleus, with $Z=28$ and $N=29$, sits one neutron above the doubly-magic $^{56}$Ni core and provides a clean testing ground for cross-shell excitations across the $N=28$ gap. Its level scheme has been mapped extensively through fusion-evaporation at high spin and through single-neutron pickup at low excitation, yet a substantial region of $(J, E_x)$ phase space, low-spin states...
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M. Y. Merrer (Université de Caen Normandie)22/09/2026 19:20Poster
The SPIRAL2 facility in GANIL will extend the capabilities of studying exotic nuclei by producing beams of radioactive isotopes with very high intensities [1]. The Super Separator Spectrometer (S$^{3}$) will select the short-lived nuclei produced by fusion-evaporation reactions, and the S$^{3}$-Low Energy Branch (S$^{3}$-LEB), installed at the focal plane of S$^{3}$, will be dedicated to the...
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Dr Diego Gruyer (LPC Caen)22/09/2026 19:20Poster
Since 2025, the INDRA-FAZIA collaboration launched a new scientific program at GANIL to explore the structure of light nuclei and astrophysical processes using direct reactions. A first experiment focused on measuring the matter radius of the carbon-12 Hoyle state via 12C+12C elastic and inelastic scattering at 105 MeV. Preliminary analysis confirms the excellent performance of FAZIA in...
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VIVEK KUMAR (Jawaharlal Nehru University)22/09/2026 19:25Poster
Understanding how fluorite oxides accommodate irradiation-induced defects is important for the development of radiation-tolerant materials for advanced nuclear systems. In this work, 25 mol% Gd₂O₃-doped CeO₂ nanopowders were synthesized and sintered at 800°C and 1300°C to obtain fluorite microstructures with different grain sizes and investigate their grain-size-dependent response under swift...
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vincent bosquet (LPC Caen)22/09/2026 19:25Poster
The MORA project [1] aims to perform a high-precision measurement of the
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D correlation in nuclear beta decay in order to search for CP violation,
using a transparent Paul trap combined with laser orientation
techniques. The experiment is currently installed at JYFL (Finland),
where it operates with a Mg beam provided by the IGISOL facility. In
the near future, MORA will be moved to the...
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