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The objective of the Graduate School of China Academy of Engineering Physics(GSCAEP) is to: 1. Implement graduate education with distinctive customization, guided by national objectives. 2. Conduct fundamental research that is oriented towards strategic needs and scientific frontiers, with complete openness. 3. Combine scientific research and education to enhance the capabilities of the basic research teams at GSCAEP.
About
About
Through a combination of scientific research and education, GSCAEP aims to establish a graduate school with distinct characteristics and first-class standards to serve the long-term strategic development of the country and the CAEP.
Research
Research
GSCAEP conducts fundamental research that is oriented towards strategic needs and scientific frontiers, with complete openness.
Research Team
Research Team
The research areas include theoretical physics, nuclear physics, complex systems, quantum information, materials and applied mathematics.
Education
Education
GSCAEP implements graduate education with distinctive customization, guided by national objectives.
Research Team
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Research Team
Rui-Zhen Huang
Professional Title: Associate Researcher
Title:
Address: R-B509
Research Areas

Quantum many-body physics, Quantum entanglement, Generalized symmetries, Tensor networks

Education

09/2013 – 06/2018: Institute of Physics, Chinese Academy of Sciences, Theoretical Physics, Ph.D.

09/2009 – 06/2013: Lanzhou University, Physics, B.Sc

 

Professional Experience

2025.01 - Present,    Graduate School of China Academy of Engineering Physics, Associate Research Professor

2021.12-2025.01,   Ghent University,BOF Postdoctoral Fellowship

2018.07-2021.12,   University of Chinese Academy of Sciences, Postdoctoral Researcher

Selected Publications

[1]. WT Xu and RZH*, Finite Correlation Length Scaling of Disorder Parameter at Quantum Criticality, Phys. Rev. Lett. 134, 146503 (2025) (Editors’ suggestion)

 

[2]. RZH*, L Zhang, A M.Läuchli, J Haegeman, F Verstraete, and L Vanderstraeten, Emergent Conformal Boundaries from Finite-Entanglement Scaling in Matrix Product States, Phys. Rev. Lett. 132, 086503 (2024)

 

[3]. XJ Yu#, RZH# , HH Song, L Xu, C Ding, L Zhang*, Conformal Boundary Conditions of Symmetry-Enriched Quantum Critical Spin Chains, Phys. Rev. Lett. 129, 210601 (2024)

 

[4]. SS Li, RZH*, and H Fan*, Fast scrambling dynamics and many-body localization transition in an all-to-all disordered quantum spin model, Phys. Rev. B 106, 024309 (2022)

 

[5]. RZH, DC Lu, YZ You, ZY Meng, T Xiang, Emergent Symmetry and Conserved Current at a One Dimensional Incarnation of Deconfined Quantum Critical Point, Phys. Rev. B 100, 125137 (2019) (Editors’ suggestion)

Rui-Zhen Huang
Gender: Associate Researcher
Title:
Mailing address:
Research Areas

Quantum many-body physics, Quantum entanglement, Generalized symmetries, Tensor networks

Education

09/2013 – 06/2018: Institute of Physics, Chinese Academy of Sciences, Theoretical Physics, Ph.D.

09/2009 – 06/2013: Lanzhou University, Physics, B.Sc

 

Professional Experience

2025.01 - Present,    Graduate School of China Academy of Engineering Physics, Associate Research Professor

2021.12-2025.01,   Ghent University,BOF Postdoctoral Fellowship

2018.07-2021.12,   University of Chinese Academy of Sciences, Postdoctoral Researcher

Selected Publications

[1]. WT Xu and RZH*, Finite Correlation Length Scaling of Disorder Parameter at Quantum Criticality, Phys. Rev. Lett. 134, 146503 (2025) (Editors’ suggestion)

 

[2]. RZH*, L Zhang, A M.Läuchli, J Haegeman, F Verstraete, and L Vanderstraeten, Emergent Conformal Boundaries from Finite-Entanglement Scaling in Matrix Product States, Phys. Rev. Lett. 132, 086503 (2024)

 

[3]. XJ Yu#, RZH# , HH Song, L Xu, C Ding, L Zhang*, Conformal Boundary Conditions of Symmetry-Enriched Quantum Critical Spin Chains, Phys. Rev. Lett. 129, 210601 (2024)

 

[4]. SS Li, RZH*, and H Fan*, Fast scrambling dynamics and many-body localization transition in an all-to-all disordered quantum spin model, Phys. Rev. B 106, 024309 (2022)

 

[5]. RZH, DC Lu, YZ You, ZY Meng, T Xiang, Emergent Symmetry and Conserved Current at a One Dimensional Incarnation of Deconfined Quantum Critical Point, Phys. Rev. B 100, 125137 (2019) (Editors’ suggestion)

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