郭文军副教授物理学院硕士生导师
研究方向:理论物理:原子核反应、同位旋物理、中子星、黑洞
办公室:卓越楼 806 室 邮箱:wjguo@usst.edu.cn 更新时间:2026-06-01
Guo WenjunAssociate ProfessorSchool of PhysicsMaster's Supervisor
Research: Theoretical physics: nuclear reactions; isospin physics; neutron stars; black holes
Office: Room 806, Zhuoyue Building | Email: wjguo@usst.edu.cn | Last updated: 2026-06-01
教育背景与工作经历
教育背景
- 1999 年 - 2004 年 山西大学物理学专业本科
工作经历
2004 年 - 2006 年 南京大学物理系博士后
2006 年 - 至今 上海理工大学理学院副教授
2013 年 - 2014 年 美国德州农工大学访问学者
科研项目
- 1. 近年对同位旋物理以及中子星、黑洞等开展较深入研究,作为课题负责人完成国家自然科学基金 2 项、上海市教委科研项目 1 项。
- 2. 积极参与教学研究,作为负责人申报上海市重点课程 1 项,承担校思政、一流教材、一体化课程项目若干项,发表教研文章近十篇。
代表性论著
- 1. Fan SiHao, Wu Chen, Guo WenJun. Absorption and scattering of massless scalar waves by black holes in quasi-topological gravity. EUROPEAN PHYSICAL JOURNAL C, 2025, (8): 86.
- 2. Fan Yan, Guo WenJun, Xi ZiHan. Effect of single particle potential on total cross section of nuclear reaction. physics open, 2025, (20): 20.
- 3. Wu Chen, Guo WenJun. Effects of φ and σ*-meson on properties of hyperon stars including Δ resonance. European Physical Journal Plus, 2025, (3): 140.
- 4. Liu Xun, Guo WenJun, Fan Yan. Effect of high momentum distribution in the nucleus on bremsstrahlung photon production. ACTA PHYSICA SINICA, 2025, (13): 74.
- 5. Guo WenJun. Discussion on teaching methods of commutation operators in quantum mechanics. Scientific Research Achievements and Dissemination (2096-6393), 2025, (2): 7.
- 6. Xi ZiHan, Guo WenJun, Wu Chen. Geodesic Structure of a Noncommutative Black Hole. INTERNATIONAL JOURNAL OF THEORETICAL PHYSICS, 2024, (63): 63.
- 7. Xi ZiHan, Guo WenJun, Wu Chen. Geodesic structure of test particles in different regular black holes. CANADIAN JOURNAL OF PHYSICS, 2024, 0098(0098): 1-8.
- 8. Ma Fu, Wu Chen, Guo WenJun. Kaon-meson condensation and resonance in hyperonic stellar matter within a relativistic mean-field model. PHYSICAL REVIEW C, 2023, 107(4): 045804.
- 9. Zhou QiYa, Guo WenJun. Research on nuclear initialization in transport theory. Journal of University of Shanghai for Science and Technology, 2023, 45(3): 64-69.
- 10. Ma Fu, Wu Chen, Guo WenJun. Kaon meson condensate in neutron star matter including hyperons. PHYSICAL REVIEW C, 2022, 105(1): 015807.
- 11. Zhang Chi, Guo WenJun. Quasinormal modes of quantum corrected black hole in the non-Ricci-flat spacetime perturbation. INDIAN JOURNAL OF PHYSICS, 2022, 2022(6): 02389.
- 12. Yan ZeNing, Wu Chen, Guo WenJun. Quasinormal modes of scalar field coupled to Einstein's tensor in the non-commutative geometry inspired black hole. NUCLEAR PHYSICS B, 2022, 973: 115595.
- 13. Lou YueShen, Guo WenJun. Research on Bayesian deep neural network for nuclear mass prediction. ACTA PHYSICA SINICA, 2022, 71(10): 102101.
- 14. Zhou QiYa, Guo WenJun. Energy level density and entropy of Sn isotopes (English). Reviews of Nuclear Physics, 2021, 38(03): 250-255.
主讲课程
- 本科生:《量子力学》《计算物理中的建模思想》《高等量子力学》 研究生:《高等量子力学》《计算物理》《原子核物理》
Education & Work Experience
Education
- 1999 - 2004, Undergraduate, Physics, Shanxi University.
Work Experience
2004 - 2006, Postdoctoral Fellow, Department of Physics, Nanjing University.
2006 - present, Associate Professor, School of Science, University of Shanghai for Science and Technology.
2013 - 2014, Visiting Scholar, Texas A&M University, USA.
Research Projects
- 1. Conducted sustained research on isospin physics as well as neutron stars and black holes; as Principal Investigator, completed two National Natural Science Foundation of China projects and one Shanghai Municipal Education Commission research project.
- 2. Also engaged in teaching research, leading one Shanghai key-course application and participating in several university projects on curriculum-based ideological and political education, first-class teaching materials, and integrated curricula.
Selected Publications
- 1. Fan SiHao, Wu Chen, Guo WenJun. Absorption and scattering of massless scalar waves by black holes in quasi-topological gravity. EUROPEAN PHYSICAL JOURNAL C, 2025, (8): 86.
- 2. Fan Yan, Guo WenJun, Xi ZiHan. Effect of single particle potential on total cross section of nuclear reaction. physics open, 2025, (20): 20.
- 3. Wu Chen, Guo WenJun. Effects of φ and σ*-meson on properties of hyperon stars including Δ resonance. European Physical Journal Plus, 2025, (3): 140.
- 4. Liu Xun, Guo WenJun, Fan Yan. Effect of high momentum distribution in the nucleus on bremsstrahlung photon production. ACTA PHYSICA SINICA, 2025, (13): 74.
- 5. Guo WenJun. Discussion on teaching methods of commutation operators in quantum mechanics. Scientific Research Achievements and Dissemination (2096-6393), 2025, (2): 7.
- 6. Xi ZiHan, Guo WenJun, Wu Chen. Geodesic Structure of a Noncommutative Black Hole. INTERNATIONAL JOURNAL OF THEORETICAL PHYSICS, 2024, (63): 63.
- 7. Xi ZiHan, Guo WenJun, Wu Chen. Geodesic structure of test particles in different regular black holes. CANADIAN JOURNAL OF PHYSICS, 2024, 0098(0098): 1-8.
- 8. Ma Fu, Wu Chen, Guo WenJun. Kaon-meson condensation and resonance in hyperonic stellar matter within a relativistic mean-field model. PHYSICAL REVIEW C, 2023, 107(4): 045804.
- 9. Zhou QiYa, Guo WenJun. Research on nuclear initialization in transport theory. Journal of University of Shanghai for Science and Technology, 2023, 45(3): 64-69.
- 10. Ma Fu, Wu Chen, Guo WenJun. Kaon meson condensate in neutron star matter including hyperons. PHYSICAL REVIEW C, 2022, 105(1): 015807.
- 11. Zhang Chi, Guo WenJun. Quasinormal modes of quantum corrected black hole in the non-Ricci-flat spacetime perturbation. INDIAN JOURNAL OF PHYSICS, 2022, 2022(6): 02389.
- 12. Yan ZeNing, Wu Chen, Guo WenJun. Quasinormal modes of scalar field coupled to Einstein's tensor in the non-commutative geometry inspired black hole. NUCLEAR PHYSICS B, 2022, 973: 115595.
- 13. Lou YueShen, Guo WenJun. Research on Bayesian deep neural network for nuclear mass prediction. ACTA PHYSICA SINICA, 2022, 71(10): 102101.
- 14. Zhou QiYa, Guo WenJun. Energy level density and entropy of Sn isotopes (English). Reviews of Nuclear Physics, 2021, 38(03): 250-255.
Courses
- Undergraduate students: "Quantum Mechanics", "Modeling Thoughts in Computational Physics", "Advanced Quantum Mechanics" Postgraduate students: "Advanced Quantum Mechanics", "Computational Physics", "Nuclear Physics"