From the 1 of 9 linked papers with an AI index.
1 citations · 2 across the 3 of their papers we have counts for
9 papers
Exact Calculation of Strongly Correlated Nucleonic Matter
Rongzhe Hu, Shaoliang Jin, Xin Zhen +4
The paper presents exact ab initio calculations of infinite nucleonic matter using the full configuration‑interaction quantum Monte Carlo method, demonstrating strong correlations…
Stochastic Similarity Renormalization Group
Rongzhe Hu, Xin Zhen, Furong Xu +1
By integrating the quantum Monte Carlo technique into the similarity renormalization group (SRG), we have developed a stochastic SRG framework (SRGQMC) capable of both free-space t…
Chiral three-nucleon forces for the new local position-space two-nucleon potential in many-body calculations
Rongzhe Hu, Jianguo Li, Siqin Fan +1
Three-nucleon force (3NF) plays an important role in understanding the structure of finite nuclei and the saturation properties of infinite nuclear matter. More specifically, 3NF s…
Stochastic many-body perturbation theory for high-order calculations
Xin Zhen, Rongzhe Hu, Junchen Pei +1
High-order perturbative calculations are challenging due to the rapidly growing configuration space and the difficulty of assessing convergence. In this letter…
Three-body Effect in Short-range Correlations
H. Y. Shang, R. Z. Hu, X. Y. Xu +3
Short-range correlations (SRCs) provide the link between low- and high-energy nuclear physics and can be quantified by two-nucleon densities. We present calculations of the two-nuc…
Toward Quantum Simulations of Atomic Nuclei Using Noisy Qubits
Chongji Jiang, Junchen Pei, Rongzhe Hu +4
Quantum computers are expected to provide a ultimate solver for quantum many-body systems, although it is a tremendous challenge to achieve that goal on current noisy quantum devic…