简介:
1999/08 - 2003/06,一只船小学。兰州市城关区。
2003/09 - 2005/06,阳光小学。西安市雁塔区。
2005/09 - 2009/06,西安交通大学附属中学,初高中。西安市碑林区。
2009/09 - 2011/05,University School,高中。美国俄亥俄州狩猎谷。
2011/09 - 2015/05,哈维穆德学院,物理系,本科。美国加利福尼亚州克莱蒙特市。
2015/09 - 2021/05,普林斯顿大学, 物理系,博士,导师:Roberto Car 教授。 美国新泽西州普林斯顿市。
2021/06 - 2024/08,加州大学伯克利分校,物理系,博士后,合作导师:Michael Zaletel 教授。美国加利福尼亚州伯克利市。
2024/09 - 2025/01,日本理化所交叉理论科学实验室,博士后,合作导师:初田哲男(Tetsuo Hatsuda)教授。日本琦玉县和光市。
2025/02 至今,中国科学院物理研究所,特聘研究员。 北京市海淀区。中科院引才计划、国家人才引进青年项目。
主要研究方向:
张量网络,统计力学,多体物理,量子信息。
课题组的主要方向是二维多体的计算问题。这个问题重要但十分困难,需要广泛的试错、合作、和鼓舞。其中三个有代表性的物理系统是:自旋玻璃,费米面,格点规范场论。它们代表了计算物理中的三个问题:蒙特卡罗应该怎样弛豫?量子纠缠应该怎样表示?描述物态时,应该如怎样理冗余?
代表性论文及专利:
- Spin-charge separation in the triangular-lattice Hofstadter-Hubbard model
Yuntian Gu, Hui Yang, Zhehao Dai, Yantao Wu
[2608.02727] - Efficient classical simulation of two-dimensional long-range systems: Rydberg arrays and beyond
Jia-Lin Chen, Tao Xiang, Yantao Wu
[2607.05178] - Real-Time Dynamics in Two Dimensions with Tensor Network States via Time-Dependent Variational Monte Carlo
Yantao Wu, Jannes Nys
PRX Quantum, in press, 2026
[journal] [2512.06768] - Accurate Gauge-Invariant Tensor Network Simulations for Abelian Lattice Gauge Theory in (2+1)D: Ground State and Real-time Dynamics
Yantao Wu, Wen-Yuan Liu
Phys. Rev. Lett. 135, 130401, 2025
[journal] [2503.20566] - Alternating and Gaussian fermionic Isometric Tensor Network States
Yantao Wu, Zhehao Dai, Sajant Anand, Sheng-Hsuan Lin, Qi Yang, Lei Wang, Frank Pollmann, Michael Zaletel
PRX Quantum 6, 040324, 2025
[journal] [2502.10695] - Algorithms for variational Monte Carlo calculations of fermion PEPS in the swap gates formulation and the detailed balance of tensor network sequential sampling
Yantao Wu, Zhehao Dai
Chin. Phys. B 35, 020502, 2026
[journal] [2506.20106] - Solving the Hubbard model with Neural Quantum States
Yuntian Gu, Wenrui Li, Heng Lin, Bo Zhan, Ruichen Li, Yifei Huang, Di He, Yantao Wu, Tao Xiang, Mingpu Qin, Liwei Wang, Dingshun Lv
Nature Communications 17, 7838, 2026
[journal] [2507.02644] - No-go theorems for sequential preparation of two-dimensional chiral states via channel-state correspondence
Ruihua Fan, Yantao Wu, Yimu Bao, Zhehao Dai
[2511.19612] - Variational Monte Carlo with row-update Projected Entangled-Pair States and its applications in quantum spin glasses
Tao Chen, Jing Liu, Yantao Wu, Pan Zhang, Youjin Deng
[2601.20608] - Disentangling Tensor Network States with Deep Neural Networks
Chaohui Fan, Bo Zhan, Yuntian Gu, Tong Liu, Yantao Wu, Mingpu Qin, Dingshun Lv, Tao Xiang
[2603.14425] - Resolving support-mismatch by local basis rotation in variational Monte Carlo
Jia-Lin Chen, Zhen Fan, Canhui Yan, Yantao Wu, Tao Xiang
[2606.23657] - Quantum-classical crossover in fault-tolerant quantum dynamics simulation
Jinzhao Sun, Bozhen Zhou, Jue Xu, Yuan Yao, Zhenyu Du, Zixu Zhang, Yuntian Gu, Junxiang Huang, Shuo Zhou, Ziruo Wang, Alexander Yosifov, Wenzheng Dong, Yiming Huang, Daniel Serrano, Xinzhao Wang, Tianfeng Feng, Shreyas Sadugol, Wenjun Yu, Zhou You, Dayue Qin, Xiao-Ming Zhang, Yantao Wu, Aditya Iyer, You Zhou, Tongyang Li, Ying Li, Xiongfeng Ma, Qi Zhao, Pei Zeng, Pan Zhang, Xiao Yuan
[2607.16116]
----------------------------------------------------Before IOP----------------------------------------------------
- Fermionic Isometric Tensor Network States in Two Dimensions
Zhehao Dai*, Yantao Wu*, Taige Wang, Michael Zaletel
Phys. Rev. Lett. 134, 026502, 2025
[journal] [2211.00043] - Improving Schrodinger Equation Implementations with Gray Code for Adiabatic Quantum Computers
Chia Cheng Chang, Kenneth McElvain, Ermal Rrapaj, Yantao Wu
PRX Quantum 3, 020356, 2022
[journal] [2103.08056] - Monte Carlo Renormalization Group for Classical Lattice Models with Quenched Disorder
Yantao Wu, Roberto Car
Phys. Rev. Lett. 125, 190601, 2020
[journal] [1810.09579] - Variational Approach to Monte Carlo Renormalization Group
Yantao Wu, Roberto Car.
Phys. Rev. Lett. 119, 220602, 2017
[journal] [1707.08683] - Evidence for the Utility of Quantum Computing before Fault Tolerance
Youngseok Kim, Andrew Eddins, Sajant Anand, Ken Xuan Wei, Ewout Van Den Berg, Sami Rosenblatt, Hasan Nayfeh, Yantao Wu, Michael Zaletel, Kristan Temme, Abhinav Kandala
Nature 618 (7965), 500-505, 2023
[journal] - Tensor network Python (TeNPy) version 1
J Hauschild, J Unfried, S Anand, B Andrews, M Bintz, U Borla, S Divic, M Drescher, J Geiger, M Hefel, K Hémery, W Kadow, J Kemp, N Kirchner, VS Liu, G Möller, D Parker, M Rader, A Romen, S Scalet, L Schoonderwoerd, M Schulz, T Soejima, P Thoma, Y Wu, P Zechmann, L Zweng, RSK Mong, MP Zaletel, F Pollmann
SciPost Phys Code.41, 2024
[journal] [2408.02010] - Two-dimensional Isometric Tensor Network States on an Infinite Strip
Yantao Wu, Sajant Anand, Sheng-Hsuan Lin, Frank Pollmann, Michael Zaletel
Phys. Rev. B 107, 245118, 2023
[journal] [2211.14337] - Time-dependent Variational Principle for Mixed Matrix Product States in the Thermodynamic Limit
Yantao Wu
Phys. Rev. B 102, 134306, 2020
[journal] [2007.15035] - Continuous-time Monte Carlo Renormalization Group
Yantao Wu, Roberto Car
Phys. Rev. B 102, 014456, 2020
[journal] [2004.08765] - Dynamical Quantum Phase Transitions of Quantum Spin Chains with an Loschmidt-rate Critical Exponent Equal to 1/2
Yantao Wu
Phys. Rev. B 101, 064427, 2020
[journal] [1912.04181] - Nonequilibrium Renormalization Group Fixed Points of the Quantum Clock Chain and the Quantum Potts Chain
Yantao Wu
Phys. Rev. B 101, 014305, 2020
[journal] [1906.07945] - Quantum Momentum Distribution and Quantum Entanglement in the Deep Tunneling Regime
Yantao Wu, Roberto Car
J. Chem. Phys. 152, 024106, 2020
[journal] [1912.05072] - Determinantion of the Critical Manifold Tangent Space and Curvature with Monte Carlo Renormalization Group
Yantao Wu, Roberto Car
Phys. Rev. E 100, 022138, 2019
[journal] [1903.08231] - Tangent Space to the Manifold of Critical Classical Hamiltonians Representable by Tensor Networks
Yantao Wu
Phys. Rev. E 100, 023306, 2019
[journal] [1903.12137] - Dissipative dynamics in isolated quantum spin chains after a local quench
Yantao Wu
[2010.00700]
培养研究生情况:
招收博士研究生、本科实习生。课题组非常计算,学生应喜欢编程且必须熟练掌握agent coding。组内计算资源包括8张H200,24张A100,16张V100,1张5090,且在不断增加。
课题组同时与向涛老师和廖海军老师联合培养张量网络和量子信息方向的研究生。
其他联系方式:
GitHub: https://github.com/yantaow
邮箱: 名 + 姓首字母 at iphy dot ac dot cn (例如,张三:sangz@..., 丁一二:yierd@...)

