祝曹祥 特任教授

发布时间:2022-03-09浏览次数:1112



祝曹祥


单位:等离子体物理与聚变工程系

职称:特任教授

电话:86-551-63607912

邮件:caoxiangzhu@ustc.edu.cn

主页:zhucaoxiang.github.io


个人简历

2008.8–2012.7 中国科学技术大学,核工程与核技术,工学学士

2012.9–2018.4 中国科学技术大学,核科学与技术,工学博士

2015.92017.9 美国普林斯顿大学,等离子体物理国家实验室,访问学者

2018.22020.3 美国普林斯顿大学,等离子体物理国家实验室,助理研究员

2020.22022.2 美国普林斯顿大学,等离子体物理国家实验室,副研究员

2022.3至今  中国科学技术大学,核科学技术学院,特任教授


主要从事先进磁约束聚变装置仿星器相关的研究,致力于从位型优化、三维线圈设计、三维磁流体平衡计算、永磁体优化设计等方向来改进未来仿星器的设计;同时也利用仿星器领域的理论和工具研究托卡马克等轴对称装置上的三维物理。截至20223月,在国际知名期刊上发表论文20余篇,在美国物理学会年会等国际重要学术会议上做特邀报告6次,荣获蔡诗东等离子体物理奖、IOP出版集团中国高被引论文奖等荣誉。


研究方向  

1.仿星器优化

2.三维线圈设计

3.永磁体设计

4.三维磁流体力学平衡

5.数值计算与数值优化


近五年来发表论文

[1] N. Lonigro, C. Zhu*, “Stellarator coil design using cubic splines for improved access on the outboard side”, Nucl. Fusion (accepted) (2021).

[2] C. Hegna, et al., “Improving the stellarator through advances in plasma theory”, Nucl. Fusion 62 (4), 042012 (2021).

[3] M. Landreman, B. Medasani, F. Wechsung, A. Giuliani, R. Jorge, C. Zhu, “SIMSOPT: A flexible framework for stellarator optimization”, Journal of Open Source Software 6 (65), 3525 (2021).

[4] M. Landreman, B. Medasani, C. Zhu, “Stellarator optimization for good magnetic surfaces at the same time as quasisymmetry”, Phys. of Plasmas 28 (9), 092505 (2021).

[5] N. McGreivy, C. Zhu, L. M. Gunderson, S. R. Hudson, “Computation of the Biot–Savart line integral with higher-order convergence using straight segments”, Phys. of Plasmas 28 (8), 082111 (2021).

[6] N. Logan, C. Zhu, J.-K. Park, S. Yang, Q. Hu, “Physics Basis for Design of 3D Coils in Tokamaks”, Nucl. Fusion 61, 076010 (2021).

[7] M. Landreman, C. Zhu, “Calculation of permanent magnet arrangements for stellarators: A linear least-squares method”, Plasma Phys. Control. Fusion 63, 035001 (2021).

[8] T. Kruger, C. Zhu, A. Bader, D.T. Anderson, L. Singh, “Constrained Stellarator Coil Curvature Optimization with FOCUS”, J. Plasma Phys. 87 (2): 175870201 (2021).

[9] N. McGreivy, S. Hudson, C. Zhu, “Optimized finite-build stellarator coils using automatic differentiation”, Nucl. Fusion 61, 026020 (2021).

[10] J.-K. Park, S. Yang, N. Logan, Q. Hu, C. Zhu, M. Zarnstorff, C. Paz-Soldan, Y. M. Jeon, W. H. Ko, “Quasi-symmetric optimization of non-axisymmetry in tokamaks”, Phys. Rev. Lett. 126 (12): 125001 (2021).

[11] K. Hammond, C. Zhu, T. Brown, K. Corrigan, D. Gates, M. Sibilia, “Geometric concepts for stellarator permanent magnet arrays”, Nucl. Fusion 60, 106010 (2020).

[12] C. Zhu, K. Hammond, T. Brown, D. Gates, M. Zarnstorff, K. Corrigan, M. Sibilia and E. Feibush, "Topology optimization of permanent magnets for stellarators", Nucl. Fusion 60, 106002 (2020).

[13] L. Singh, T. G. Kruger, A. Bader, C. Zhu, S. R. Hudson, D. T. Anderson, “Optimization of finite-build stellarator coils”, J. Plasma Phys. 86(4), 905860404 (2020).

[14] S. Yang, J.-K. Park, N. Logan, C. Zhu, Q. Hu, Y. Jeon, Y. In, W. Ko, S. Kim, Y. Lee, Y.-S. Na, “Localizing Resonant Magnetic Perturbations for Edge Localized Mode Control in KSTAR”, Nucl. Fusion 60, 096023 (2020).

[15] S. R. Hudson, J. Loizu, C. Zhu, Z. S. Qu, C. Nührenberg, S. Lazerson, C. B. Smiet, M. J. Hole, “Free-boundary MRxMHD equilibrium calculations using the Stepped-Pressure Equilibrium Code”, Plasma Phys. Control. Fusion 62(8), 084002 (2020).

[16] J. Lobsien, M. Drevlak, T. Kruger, S. Lazerson, C. Zhu, T. S. Pedersen, “Improved performance of stellarator coil design optimization”, J. Plasma Phys. 86(2), 815860202 (2020).

[17] C. Zhu, M. Zarnstorff, D. Gates, A. Brooks, "Designing stellarators using perpendicular permanent magnets", Nucl. Fusion 60, 076016 (2020)

[18] C. Zhu, D. A. Gates, S. R. Hudson, H. Liu, Y. Xu, A. Shimizu, and S. Okamura, "Identification of important error fields in stellarators using Hessian matrix method", Nucl. Fusion 59, 126007 (2019).

[19] S. R. Hudson, C. Zhu, D. Pfefferlé, and L. Gunderson, "Differentiating the shape of stellarator coils with respect to the plasma boundary", Phys. Lett. A. 382, 2732 (2018).

[20] C. Zhu, S. R. Hudson, S. A. Lazerson, Y. Song, and Y. Wan, "Hessian matrix approach for determining error field sensitivity to coil deviations", Plasma Phys. Control. Fusion 60, 054016 (2018).

[21] C. Zhu, S. R. Hudson, Y. Song, and Y. Wan, "Designing stellarator coils by a modified Newton method using FOCUS", Plasma Phys. Control. Fusion 60, 065008 (2018).

[22] C. Zhu, S. R. Hudson, Y. Song, and Y. Wan, "New method to design stellarator coils without the winding surface", Nucl. Fusion 58, 016008 (2018).