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From the 1 of 8 linked papers with an AI index.

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8 papers

nucl-th2026

Proton emission half-lives and shape coexistence for odd- nuclei

Yongbeom Choi, Chang-Hwan Lee, Youngman Kim

One-proton emission is a direct probe of nuclear structure near the proton drip line and plays a critical role in understanding exotic decay modes and nucleosynthesis processes. In…

nucl-th2026

Intruder-driven mirror energy differences between Cl and Mg studied with antisymmetrized molecular dynamics

Dae Ik Kim, Masaaki Kimura, Chang-Hwan Lee +1

The paper uses antisymmetrized molecular dynamics to study low‑lying states of the mirror nuclei ⁽²⁹⁾Cl and ⁽²⁹⁾Mg, predicting spin‑parity assignments and explaining large mirror e…

astro-ph.GA2026

The Sc, Ti, and V Abundance Discrepancy: Testing High-Mass IMF Variation and Massive-Star Rotation

Soonchul Choi, Eda Gjergo, Youngman Kim +1

Scandium, titanium, and vanadium can be synthesized primarily in massive stars. Yet many of the current Galactic chemical evolution models under-produce these elements at early epo…

nucl-th2026

Searching for the Tetraneutron Resonance on the Lattice

Linqian Wu, Serdar Elhatisari, Ulf-G. Meißner +3

The nature of the tetraneutron () system remains a pivotal question in nuclear physics. We investigate the system using nuclear lattice effective field theory in finite vo…

nucl-th2026

Heavy-ion collision simulation with high performance computer

Dae Ik Kim, Chang-Hwan Lee, Youngman Kim +1

Heavy-ion collision is an important tool to understand the dense nuclear matter properties. In order to understand the results of the heavy-ion collision experiments, both theoreti…

nucl-th2026

Quark-meson coupling model and heavy-ion collision

Dae Ik Kim, Chang-Hwan Lee, Kyungil Kim +3

We implement the quark-meson coupling model in Daejeon Boltzmann-Uehling-Uhlenbeck (DJBUU) transport model and perform Au+Au collision simulations at intermediate energies. Results…