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Lingxiao Wang
Lingxiao Wang
iTHEMS, RIKEN
Подтвержден адрес электронной почты в домене riken.jp - Главная страница
Название
Процитировано
Процитировано
Год
Deep learning stochastic processes with QCD phase transition
L Jiang, L Wang, K Zhou
Physical Review D 103 (11), 116023, 2021
312021
Neural network reconstruction of the dense matter equation of state from neutron star observables
S Soma, L Wang, S Shi, H Stöcker, K Zhou
Journal of Cosmology and Astroparticle Physics 2022 (08), 071, 2022
282022
Tumor radiomics signature for artificial neural network-assisted detection of neck metastasis in patient with tongue cancer
YW Zhong, Y Jiang, S Dong, WJ Wu, LX Wang, J Zhang, MW Huang
Journal of Neuroradiology 49 (2), 213-218, 2022
252022
Reconstructing the neutron star equation of state from observational data via automatic differentiation
S Soma, L Wang, S Shi, H Stöcker, K Zhou
Physical Review D 107 (8), 083028, 2023
232023
Reconstructing spectral functions via automatic differentiation
L Wang, S Shi, K Zhou
Physical Review D 106 (5), L051502, 2022
232022
Machine learning spatio-temporal epidemiological model to evaluate Germany-county-level COVID-19 risk
L Wang, T Xu, T Stoecker, H Stoecker, Y Jiang, K Zhou
Machine Learning: Science and Technology 2 (3), 035031, 2021
232021
Local suppression and enhancement of the pairing condensate under rotation
L Wang, Y Jiang, L He, P Zhuang
Physical Review C 100 (3), 034902, 2019
232019
Rethinking the ill-posedness of the spectral function reconstruction—Why is it fundamentally hard and how Artificial Neural Networks can help
S Shi, L Wang, K Zhou
Computer Physics Communications 282, 108547, 2023
212023
Continuous-Mixture Autoregressive Networks Learning the Kosterlitz-Thouless Transition
L Wang, Y Jiang, L He, K Zhou
Chinese Physics Letters 39 (12), 120502, 2022
20*2022
Nambu–Jona-Lasinio model in a parallel electromagnetic field
L Wang, G Cao, XG Huang, P Zhuang
Physics Letters B 780, 273-282, 2018
202018
Exploring QCD matter in extreme conditions with Machine Learning
K Zhou, L Wang, LG Pang, S Shi
Progress in Particle and Nuclear Physics, 104084, 2023
162023
Escape dynamics based on bounded rationality
L Wang, Y Jiang
Physica A: Statistical Mechanics and its Applications 531, 121777, 2019
162019
Chiral vortices and pseudoscalar condensation due to rotation
L Wang, Y Jiang, L He, P Zhuang
Physical Review D 100 (11), 114009, 2019
142019
Competition between magnetic catalysis effect and chiral rotation effect
L Wang, G Cao
Physical Review D 97 (3), 034014, 2018
142018
Fourier-flow model generating Feynman paths
S Chen, O Savchuk, S Zheng, B Chen, H Stoecker, L Wang, K Zhou
Physical Review D 107 (5), 056001, 2023
112023
Mode decomposed chiral magnetic effect and rotating fermions
K Fukushima, T Shimazaki, L Wang
Physical Review D 102 (1), 014045, 2020
112020
Measuring dynamics in evacuation behaviour with deep learning
H Hou, L Wang
Entropy 24 (2), 198, 2022
92022
Detecting the chiral magnetic effect via deep learning
YS Zhao, L Wang, K Zhou, XG Huang
Physical Review C 106 (5), L051901, 2022
82022
Automatic differentiation approach for reconstructing spectral functions with neural networks
L Wang, S Shi, K Zhou
NeurIPS2021 Machine Learning and the Physical Science Workshop, 2021
62021
Spatial modes of cooperation based on bounded rationality
Q Pan, L Wang, R Shi, H Wang, M He
Physica A: Statistical Mechanics and its Applications 415, 421-427, 2014
42014
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