activity
20242026
collaborators

16 papers

hep-ph2026

Meson-Nucleus Bound States with Neural-Network Quantum States

Wei-Lin Wu, Liang-Zhen Wen, Shi-Lin Zhu

We present the first systematic calculations of -, -, and -nucleus ground states up to mass number based on the HAL QCD meson-nucleon potentials at near-ph…

physics.atom-ph2026

A nuclear clock based on Th

Beichen Huang, Gaowei Yan, Qi Xiao +35

Atomic clocks have made time and frequency the most precisely measured quantities in physics, progressing from microwave standards that realize the SI second to optical clocks that…

hep-ph2026

DeepQuark: A Deep-Neural-Network Approach to Multiquark Bound States

Wei-Lin Wu, Lu Meng, Shi-Lin Zhu

For the first time, we implement the deep-neural-network-based variational Monte Carlo approach for the multiquark bound states, whose complexity surpasses that of electron or nucl…

hep-ph2025

Singly heavy tetraquark resonant states with multiple strange quarks

Xin-He Zheng, Yao Ma, Shi-Lin Zhu

We systematically investigate the S-wave singly heavy tetraquark systems containing two or three strange quarks, , and $Qs\bar{s}\bar{n}\left(…

hep-ph2025

Tetraquark states in the quark model

Wei-Lin Wu, Yan-Ke Chen, Yao Ma +2

We perform systematical investigations of heavy flavor tetraquark systems, including fully heavy (), doubly heavy (), and…

hep-ph2025

Electromagnetic polarizabilities of the spin- baryons in heavy baryon chiral perturbation theory

Liang-Zhen Wen, Yan-Ke Chen, Lu Meng +1

We employ Heavy Baryon Chiral Perturbation Theory (HBPT), a non-relativistic effective field theory that treats baryons as heavy static sources, to calculate the electromagneti…