基本信息
张宁涛 中国科学院近代物理研究所
电子邮件: zhangningtao@impcas.ac.cn
通信地址: 甘肃省兰州市南昌路509号
邮政编码: 730000
电子邮件: zhangningtao@impcas.ac.cn
通信地址: 甘肃省兰州市南昌路509号
邮政编码: 730000
研究领域
1)低能核反应直接测量。利用强流加速器,测量天体能区重要核反应的反应截面,研究其在星体核合成中的贡献。
2)发展强流下的螺线管技术和TPC技术,重点开展天体碳氮氧循环中(p,a)闭合反应和恒星中重要的(a,p)、(a,d)反应的测量研究。
3)发展活性靶时间投影室TPC技术和注入衰变探测技术,基于放射性束流装置开展奇异核的结构和核反应截面研究。
招生信息
人类现已能够勾勒出宇宙138亿年的演化轮廓,但对宇宙星体起源和元素起源研究,当前仍存在很多没有解决的重大难题。利用核物理手段测量天体重要核反应截面,研究元素核合成过程是我们的研究方向。希望有志于发展探测技术、测量研究天体关键核反应的青年学子报考核天体物理。
招生专业
070202-粒子物理与原子核物理
招生方向
核物理、核天体物理
教育背景
2006-09--2011-07 中国科学院近代物理研究所 博士
工作经历
工作简历
2022-11~现在, 中国科学院近代物理研究所, 研究员2017-12~2018-12,日本东京大学CNS, 访问学者2014-11~2022-10,中国科学院近代物理研究所, 副研究员2011-07~2014-10,中国科学院近代物理研究所, 助理研究员
社会兼职
2023-01-01-今,研究生产业导师,
教授课程
Geant4在核物理实验中的应用
讲述Geant4模拟的基础框架和在核物理实验中的应用,4个学时
出版信息
- “Fusion reaction of 19O+12C studied with an active-target time projection chamber in the energy range 9.7 < Ec.m. < 16.9 MeV”, J. L. Zhang, C. G. Lu*, Z. C. Zhang, Z. Bai, F. F. Duan, L. M. Duan, B. S. Gao, B. F. Ji, K. A. Li, Y. T. Li, W. H. Long, J. B. Ma, S. B. Ma, K. Meng, H. J. Ong, T. L. Pu, L. H. Ru, X. D. Tang*, K. Wang, X. Y. Wang, S. W. Xu, X. D. Xu, G. Yang, Y. Y. Yang, L. Y. Zhang, N. T. Zhang*, Chin. Phys. C 50, 044005 (2026).
- “12C+12C fusion reaction at astrophysical energies using HOPG target”, Shuo Wang, Yun‑Zhen Li, Long‑Hui Ru, Xin‑Yu Wang, Ning‑Tao Zhang*, Yi‑Hua Fan, Yu‑Cheng Feng, Bing‑Shui Gao, Hao Huang, Tao‑Yu Jiao, Hao Jian, Kuo‑Ang Li, Jia‑Qing Li, Li‑Bin Li, Xiao‑Bin Li, Chen‑Gui Lu, En‑Qiang Liu, Bing‑Feng Lv, Hong‑Yi Ma, Hooi‑Jin Ong, Fu‑Shuai Shi, Liang‑Ting Sun, Xiao‑Dong Tang, Yu Tang, Bing Wang, Hou‑Qing Wang, Yao Yang, Yu‑Han Zhai, Jin‑Long Zhang, Bo Zhang, Peng Zhang, Zhi‑Chao Zhang, Xiao‑Dong Xu, Wei‑Ping Lin*, Chun Wen, De‑Hao Xie, Zhi‑Yong Zhang, Xiao Fang, Hong‑Yi Wu, Tao Tian, Jun‑Rui Ma, Cheng‑Lin Hao, Yu‑Na Yang, Yu‑Yang Yu, Xue Liu, Yun‑Long Lu, Si‑Tao Zhu, Nucl. Sci. Tech. 36, 143 (2025).
- “Construction and performance test of charged particle detector array for MATE”, Xiao‑Bin Li, Long‑Hui Ru, Zhi‑Chao Zhang*, Bing‑Feng Lv, Ning‑Tao Zhang*, Jin‑Long Zhang, Chen‑Gui Lu, Bing‑Shui Gao, Jun‑Bing Ma, Fu‑Shuai Shi, Satoru Terashima, Xiao‑Dong Xu, Zhen Bai, Shi‑Wei Xu, Yan‑Yun Yang, Hooi‑Jin Ong*, Xiao‑Dong Tang, Nucl. Sci. Tech. 35, 131 (2024).
- “Development of a gating grid driver of TPC for exotic beam experiments”, Jiangyue Yuan, Yunzhen Li, Hongyun Zhao, Tianlei Pu, Qianshun She, Changxin Wang, Yi Qian*, Hong Su, Chengui Lu, Ningtao Zhang, Jie Kong, Xiaodong Tang, Eur. Phys. J. C 83, 600 (2023).
- “Studies of the 2α and 3α channels of the 12C+12C reaction in the range of Ec.m.=8.9 MeV to 21 MeV using the active target Time Projection Chamber”, X. Y. Wang, N. T. Zhang*, Z. C. Zhang, C. G. Lu*, T. L. Pu, J. L. Zhang, L. M. Duan, B. S. Gao, K. A. Li, Y. T. Li, Y. Qian, L. H. Ru, B. Wang, X. D. Xu, H. Y. Zhao, W. P. Lin, Z. W. Cai, B. F. Ji, Q. T. Li, J. Y. Xu, X. D. Tang, Chin. Phys. C 46, 104001 (2022).
- “Deep Underground Laboratory Measurement of 13C(α,n)16O in the Gamow Windows of the s and i Processes”, B. Gao, T. Y. Jiao, Y. T. Li, H. Chen, W. P. Lin, Z. An, L. H. Ru, Z. C. Zhang, X. D. Tang*, X. Y. Wang, N. T. Zhang et al., Phys. Rev. Lett. 129, 132701 (2022).
- “Advancement of Photospheric Radius Expansion and Clocked Type-I X-Ray Burst Models with the New 22Mg(α,p)25Al Reaction Rate Determined at the Gamow Energy”, J. Hu*, H. Yamaguchi, Y. H. Lam*, A. Heger, D. Kahl, A.M. Jacobs, Z. Johnston, S.W. Xu, N. T. Zhang et al., Phys. Rev. Lett. 127, 172701 (2021).
- “Studying the heavy-ion fusion reactions at stellar energies using Time Projection Chamber”, Z. C. Zhang, X. Y. Wang, T. L. Pu, C. G. Lu*, N. T. Zhang*, J. L. Zhang, L. M. Duan, B. S. Gao, J. Gao, R. J. Hu, E. Q. Liu, K. A. Li, Q. T. Li, Y. T. Li, B. F. Lv, H. Y. M, J. B. Ma, H. J. Ong, Y. Qian, L. H. Ru, L. T. Sun, X. D. Tang, J. Y. Xu, X. D. Xu, Y. Yang, Y. H. Zhai, H. Y. Zhao, H. W. Zhao, Nuclear Inst. and Methods in Physics Research, A 1016, 165740 (2021).
- “Constraining the 12C+12C astrophysical S-factors with the 12C+13C measurements at very low energies”, N. T. Zhang, X. Y. Wang, D. Tudor*, B. Bucher, I. Burducea, H. Chen, Z. J. Chen, D. Chesneanu, A. I. Chilug, L. R. Gasques, D. G. Ghita, C. Gomoiu, K. Hagino, S. Kubono, Y. J. Li, C. J. Lin, W. P. Lin, R. Margineanu, A. Pantelica, I. C. Stefanescu, M. Straticiuc, X. D. Tang∗, L. Trache∗, A. S. Umar, W. Y. Xin, S. W. Xu, Y. Xu, Phys. Lett. B 801, 135170 (2020).
- “用于核天体物理实验的活性靶时间投影室”, 张志超, 张宁涛(通讯), 鲁辰桂, 蒲天磊, 张金龙, 陈涵, 段利敏, 高丙水, 李阔昂, 李宇田, 千奕, 茹龙辉, 唐晓东, 王新雨, 徐晓栋, 赵红赟, 蔡紫葳, 姬彬斐, 李奇特, 许金艳, 林炜平, 核物理评论37, 636 (2020).
- “Study of the Systematic Errors Introduced by the Statistical Model in the Measurement of 12C+13C Fusion Reaction”, XIN Wenyu, ZHANG Ningtao*, XU Yi, AN Zhu, BAI Fan, LIN Weiping, TANG Xiaodong, WANG Peng, XU Shiwei, Nucl. Phys. Rev. 36, 289 (2019).
- “A method for determination of deuterium impurity in the helium”, Han Chen*, ShiWei Xu, NingTao Zhang, Jun Hu, KuoAng Li, ShaoBo Ma, XiChao Ruan, XiaoDong Tang, and LiYong Zhang, Sci. China-Phys. Mech. Astron. 61, 052021 (2018).
- “活性靶技术熔合截面测量极限研究”, 季炼程, 张宁涛, 林炜平,唐晓东(通讯), 核物理评论35, 119 (2018).
- “12C+13C在库仑位垒以下能区的熔合截面测量”, 陈治均, 张宁涛(通讯), 李奇特, 任晓堂, 唐晓东, 王新雨, 许金艳, 许世伟,核物理评论34, 705 (2017).
- “Revalidation of the isobaric multiplet mass equation at A=53, T=3/2”, J. Su, W. P. Liu, N. T. Zhang, Y. P. Shen, Y. H. Lam, N. A. Smirnova, M. MacCormick, J. S. Wang, L. Jing, Z. H. Li, Y. B. Wang, B.Guo, S. Q.Yan, Y. J. Li, S. Zeng, G. Lian, X. C. Du, L. Gan, X. X. Bai, Z. C.Gao, Y. H. Zhang, X. H. Zhou , X.D. Tang, J. J. He, Y. Y. Yang, S. L. Jin, P. Ma, J. B. Ma, M. R. Huang, Z. Bai, Y. J. Zhou, W. H. Ma, J. Hu, S. W. Xu, S. B. Ma, S. Z. Chen, L. Y. Zhang, B. Ding, Z. H. Li, G. Audi, Phys. Lett. B 756, 323 (2016).
- “Complete and incomplete fusion in the 9Be+181Ta reaction”, N. T. Zhang, Y. D. Fang*, P. R. S. Gomes, J. Lubian, M. L. Liu, X. H. Zhou*, G. S. Li, J. G. Wang, S. Guo, Y. H. Qiang, Y. H. Zhang, D. R. Mendes Junior, Y. Zheng, X. G. Lei, B. S. Gao, Z. G. Wang, K. L. Wang, and X. F. He, Phys. Rev. C 90, 024621 (2014)
- “Characteristics of a CsI(Tl) Compton suppressed clover detector”, N. T. Zhang, X. G. Lei, Y. X. Guo, X. H. Zhou, Y. H. Zhang, F. Ma, S. C. Li, M. L. Liu, Y. Zheng, M. L. Liu, Y. Zheng, Y. D. Fang, W. Hua, S. Guo, Y. H. Qiang, J. W. Wang, B. S. Gao, S. W. Xu, S. Z. Chen, J. Phys. G: Nucl. Part. Phys., 40, 035101 (2013).
- “Measured and Simulated Performance of a Four-Segmented Clover Detector”, N. T. Zhang*, X. G. LEI, Y. H. Zhang, X. H. Zhou, M. L. Liu, Y. X. Guo, Y. D. Fang, S. C. Li, H. B. Zhou, B. Ding, H. X. Wang, X. G. Wu, C. Y. He, Y. Zheng, Chin. Phys. Lett. 29, 042901 (2012).
- “In-beam γ spectroscopy of the odd-Z nucleus 139Pm”, N. T. Zhang, Y. H. Zhang, X. H. Zhou, M. L. Liu, Y. Zheng, J. G. Wang, Y. D. Fang, B. Ding, W. J. Huang, Y. X. Guo, X. G. Lei, L. Chen, S. T. Wang, X. G. Wu, and Y. Zheng, Phys. Rev. C 84, 057302 (2011).
- “Dipole bands in nucleus 139Pm”, N. T. Zhang, Y. H. Zhang, X. H. Zhou, M. L. Liu, Y. Zheng, Y. X. Guo, L. Chen, S. T. Wang, X. Zhang, L. H. Zhu, X. G. Wu, Chin. Phys. C 34, 456 (2010).