Hongyuan Chen/ Postdoctoral Scholar
Condensed Matter Division
B207

Educational Background

  • 2015- 2019, NanJing Normal University , B.S
  • 2019- 2025, Shanghai Jiao Tong University , Ph.D

Work Experience

  • 2025-Now, Tsung-Dao Lee Institute, Shanghai Jiao Tong University, Postdoc

Research Interests

  • Shot noise scanning tunneling microscope
  • Preparation and STM characterization of Josephson junctions

Representative Papers And Monographs

  • H. Chen, X. Ma, B. Yang, L. Jiang, B. Xia, B. Yang, J. Cai, Y. Zhang, H. Yang, L. Liu, X. Liu, D. Guan, S. Wang, Y. Li, C. Liu, H. Zheng, L. Hu, H. Yi, and J. Jia. Selective Area Growth of Josephson Junctions in Ladder-like Structures of Bismuth Islands. Small Methods 9, 2402208 (2025).
  • B. Xia, H. Chen, J. Zhen, B. Yang, J. Cai, Y. Zhang, Y. Yang, H. Yang, D. Guan, X. Liu, L. Liu, Y. Li, S. Wang, C. Liu, H. Zheng, J. Jia, Manipulation of vortex array via a magnetism-tunable spin-polarized scanning tunnelling microscopy. Chin. Phys. B. 34, 037402(2025).
  • B. Yang, B. Xia, H. Chen, J. Cai, H. Yang, X. Liu, L. Liu, D. Guan, S. Wang, Y. Li, H. Zheng, C. Liu, J. Jia, Stencil Lithography-Assisted Fabrication of Triangular Grid Pb Architecture. Adv Quantum Technol. 6, 2300137 (2023).
  • C. Liu, S. Tao, G. Wang, H. Chen, B. Xia, H. Yang, X. Liu, L. Liu, Y. Li, S. Wang, H. Zheng, C. Liu, D. Guan, Y. Lu and J. Jia. Tunable topological edge states in black-phosphorus-like Bi(110). Phys. Rev. B 110, 195427 (2024).
  • B. Yang, C. Zhao, B. Xia, H. Ma, H. Chen, J. Cai, H. Yang, X. Liu, L. Liu, D. Guan, S. Wang, Y. Li, C. Liu, H. Zheng and J. Jia. Interface-enhanced superconductivity in monolayer 1T’-MoTe2 on SrTiO3(001). Quantum Front 2, 9 (2023).
  • C. Zhao, L. Li, L. Zhang, J. Qin, H. Chen, B. Xia, B. Yang, H. Zheng, S. Wang, C. Liu, Y. Li, D. Guan, P. Cui, Z. Zhang and J. Jia. Coexistence of Robust Edge States and Superconductivity in Few-Layer Stanene. Phys. Rev. Lett. 128, 206802 (2022).
  • H. Chen, Y. Yang, Z. Yu, M. Zhong, and L. Zhang. Thermal Hall effect from a modified Lorentz gas model. Phys. Rev. E 101, 042129 (2020).
  • H. Chen, H. Wang, Y. Yang, N. Li, and L. Zhang. Rough boundary effect in thermal transport: A Lorentz gas model. Phys. Rev. E 98, 032131 (2018).
  • Y. Yang, H. Chen, H. Wang, N. Li, and L. Zhang. Optimal thermal rectification of heterojunctions under Fourier law. Phys. Rev. E 98, 042131 (2018).
  • H. Wang, Y. Yang, H. Chen, N. Li, and L. Zhang. Thermal rectification induced by geometrical asymmetry: A two-dimensional multiparticle Lorentz gas model. Phys. Rev. E 99, 062111 (2019).