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From the 1 of 6 linked papers with an AI index.

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6 papers

nucl-th2026

Exploring the shell structure of trapped superfluid gases

G. Palkanoglou, R. Curry, S. Gandolfi

The paper uses quantum Monte Carlo simulations to study how the scattering length and effective range of attractive interactions affect shell structure in trapped two‑component Fer…

nucl-ex2026

Interplay between Nuclear Shell Structure and Pairing around Doubly Magic Sn

Rane Simpson, Georgios Palkanoglou, Ellen Brisley +20

Shell structure in finite quantum systems gives rise to sudden changes in observable properties, while pairing correlations often compete against such discontinuities. The region n…

nucl-th2026

Evidence for Multimodal Superfluidity of Neutrons

Yuan-Zhuo Ma, Georgios Palkanoglou, Joseph Carlson +7

We present theoretical and experimental evidence for a new phase of matter in neutron-rich systems that we call multimodal superfluidity. Using ab initio lattice calculations, we s…

nucl-th2025

A novel way of recasting the Bardeen-Cooper-Schrieffer gap equations

Georgios Palkanoglou, Alexandros Gezerlis

The gap equations lie at the core of the Bardeen-Cooper-Schrieffer (BCS) theory, a standard tool in the description of superfluidity. As a set of non-linear integral equations, the…

nucl-th2025

Symmetry properties of pair correlations in heavy deformed nuclei

G. Palkanoglou, A. Gezerlis

Nucleons are known to form pairing correlations with various types of spin-symmetries. Spin-singlet neutron-neutron and proton-proton pairing is abundant in the nuclear chart but s…

nucl-th2025

Spin-Triplet Pairing in Heavy Nuclei is Stable Against Deformation

G. Palkanoglou, M. Stuck, A. Gezerlis

Any experimental evidence of nucleons paired in spin-triplet states will confirm the existence of an exotic phase of nuclear matter. This type of nuclear superfluidity has been hyp…