7 citations · 16 across the 8 of their papers we have counts for
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Multi-reference Trial State for Lattice Quantum Monte Carlo Simulations
Teng Wang, Xu Feng, Bing-Nan Lu
Nuclear lattice effective field theory (NLEFT) is an efficient \textit{ab initio} tool for solving nuclear many-body systems using the imaginary-time projection technique, where th…
Observation of renormalization group invariance in symmetry-restored nuclear lattice effective field theory
Jia-Ai Shi, Chen-Can Wang, Bing-Nan Lu
Renormalization group (RG) invariance implies that the predictions of effective field theory are independent of the momentum cutoffs introduced during regularization. Here we repor…
Sign-Problem-Free Nuclear Quantum Monte Carlo Simulation
Zhong-Wang Niu, Bing-Nan Lu
Quantum Monte Carlo (QMC) methods offer exact solutions for quantum many-body systems but face severe limitations in fermionic systems like atomic nuclei due to the sign problem. W…
Investigating nuclear beta decay using lattice quantum Monte Carlo approach
Teng Wang, Xu Feng, Bing-Nan Lu
We present an \textit{ab initio} calculation of nuclear decay within the framework of nuclear lattice effective field theory (NLEFT), employing auxiliary-field quantum Monte Ca…
Charge-dependent nucleon-nucleon interaction at NLO in nuclear lattice effective field theory
Chengxin Wu, Teng Wang, Bing-Nan Lu +1
The nuclear lattice effective field theory (NLEFT) is an efficient tool for solving nuclear many-body problems, which takes high-fidelity lattice chiral interactions as input and c…