基本信息
徐晓栋  男  硕导  中国科学院近代物理研究所
电子邮件: xiaodong.xu@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

原子核物理

核天体物理

招生信息

   
招生专业
070202-粒子物理与原子核物理
招生方向
基于放射性离子束的重离子物理
核天体物理

教育背景

2012-09--2016-06   德国吉森大学   自然科学博士
2010-09--2018-07   北京航空航天大学   理学博士
2006-09--2010-07   西北工业大学   理学学士
学历

博士研究生

学位

理学博士

自然科学博士


工作经历

   
工作简历
2018-08~现在, 中国科学院近代物理研究所, 副研究员
2018-07~2018-08,中国科学院近代物理研究所, 参加工作

专利与奖励

   
奖励信息
(1) “欧洲奇特核束流暑期学校”最佳海报奖, 一等奖, 其他, 2014
(2) 西北工业大学优秀毕业生, 二等奖, 研究所(学校), 2010

出版信息

   
发表论文
[1] Li, GuangShuai, Su, Jun, Sun, BaoHua, Terashima, Satoru, Zhao, JianWei, Xu, XiaoDong, Zhang, JiChao, Guo, Ge, He, Liu Chun, Lin, Wei Ping, Lin, WenJian, Liu, ChuanYe, Lu, ChenGui, Mei, Bo, Sun, ZhiYu, Tanihata, Isao, Wang, Meng, Wang, Feng, Wang, ShiTao, Wei, XiuLin, Wang, Jing, Xu, JunYao, Liu, JinRong, Zhang, MeiXue, Zheng, Yong, Zhu, LiHua, Zhang, XueHeng. New measurement of the elemental fragmentation cross sections of 218 MeV/nucleon 28Si on a carbon target. PHYSICAL REVIEW C[J]. 2023, 107(2): http://dx.doi.org/10.1103/PhysRevC.107.024609.
[2] 王新雨, 张宁涛, 张志超, 鲁辰桂, 蒲天磊, 张金龙, 段利敏, 高丙水, 李阔昂, 李宇田, 千奕, 茹龙辉, 王兵, 徐晓栋, 赵红赟, 林炜平, 蔡紫葳, 姬彬斐, 李奇特, 许金艳, 唐晓东. Studies of the 2α and 3α channels of the ^(12)C+^(12)C reaction in the range of E_(c.m.)=8.9 MeV to 21 MeV using the active target Time Projection Chamber. 中国物理C:英文版[J]. 2022, 46(10): 116-125, http://lib.cqvip.com/Qikan/Article/Detail?id=7108407202.
[3] 徐晓栋, 孙亚洲, 王世陶, 梅波, 金树亚, 章学恒, 孙志宇, 赵亦轩, 唐述文, 余玉洪, 闫铎, 方芳, 张永杰, 马少波. Isotopic production cross sections of fragmentation residues produced by ^(18)O ions on a carbon target near 260 MeV/nucleon. 中国物理C:英文版[J]. 2022, 46(11): 1-6, http://lib.cqvip.com/Qikan/Article/Detail?id=7108485848.
[4] Zhang, Z C, Wang, X Y, Pu, T L, Lu, C G, Zhang, N T, Zhang, J L, Duan, L M, Gao, B S, Gao, J, Hu, R J, Liu, E Q, Li, K A, Li, Q T, Li, Y T, Lv, B F, Ma, H Y, Ma, J B, Ong, H J, Qian, Y, Ru, L H, Sun, L T, Tang, X D, Xu, J Y, Xu, X D, Yang, Y, Zhai, Y H, Zhao, H Y, Zhao, H W. Studying the heavy-ion fusion reactions at stellar energies using Time Projection Chamber. NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT[J]. 2021, 1016: http://dx.doi.org/10.1016/j.nima.2021.165740.
[5] 张志超, 张宁涛, 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. 用于核天体物理实验的活性靶时间投影室. 原子核物理评论[J]. 2020, 7-, https://kns.cnki.net/KCMS/detail/detail.aspx?dbcode=CJFD&dbname=CJFDAUTO&filename=HWDT202003047&v=MDgzMzh6T0xUclBlckc0SE5ITXJJOUJZNFI4ZVgxTHV4WVM3RGgxVDNxVHJXTTFGckNVUjd1ZlplZHRGeWprVjc=.
[6] Xu Xiaodong, BeihangIMP ChargeChanging Cross Section Collaboration. Recent Progress in the Measurement of Charge-changing Cross Sections of Neutron-rich P Isotopes on a C Target. 中国科学院近代物理研究所和兰州重离子研究装置年报:英文版[J]. 2019, 51-52, http://lib.cqvip.com/Qikan/Article/Detail?id=7103854698.
[7] Kostyleva, D, Mukha, I, Acosta, L, Casarejos, E, Chudoba, V, Ciemny, A A, Dominik, W, Duenas, J A, Dunin, V, Espino, J M, Estrade, A, Farinon, F, Fomichev, A, Geissel, H, Gorshkov, A, Grigorenko, L, V, Janas, Z, Kaminski, G, Kiselev, O, Knobel, R, Krupko, S, Kuich, M, Litvinov, Yu A, MarquinezDuran, G, Martel, I, Mazzocchi, C, Nociforo, C, Orduz, A K, Pfutzner, M, Pietri, S, Pomorski, M, Prochazka, A, Rymzhanova, S, SanchezBenitez, A M, Scheidenberger, C, Simon, H, Sitar, B, Slepnev, R, Stanoiu, M, Strmen, P, Szarka, I, Takechi, M, Tanaka, Y K, Weick, H, Winkler, M, Winfield, J S, Xu, X, Zhukov, M, V. Towards the Limits of Existence of Nuclear Structure: Observation and First Spectroscopy of the Isotope K-31 by Measuring Its Three-Proton Decay. PHYSICAL REVIEW LETTERS[J]. 2019, 123(9): https://www.webofscience.com/wos/woscc/full-record/WOS:000483048500005.
[8] Zhao, J W, Sun, B H, He, L C, Li, G S, Lin, W J, Liu, C Y, Liu, Z, Lu, C G, Shen, D P, Sun, Y Z, Sun, Z Y, Tanihata, I, Terashiman, S, Tran, D T, Wang, F, Wang, J, Wang, S T, Wei, X L, Xu, X D, Zhu, L H, Zhang, J C, Zhang, X H, Zhang, Y, Zhou, Z T. Improvement of charge resolution for radioactive heavy ions at relativistic energies using a hybrid detector system. NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT[J]. 2019, 930: 95-99, http://dx.doi.org/10.1016/j.nima.2019.03.063.
[9] Zhang Ningtao, Zhang Zhichao, Zhang Jinlong, Tang Xiaodong, Lu Chengui, Gao Bingshui, Li Yutian, Li Kuoang, Pu Tianlei, Ru Longhui, Wang Xinyu, Xu Xiaodong, Cai Ziwei, Li Qite, Ji Binfei, Xu Jinyan. Fusion Studies with Low-intensity Beams Using the Active Target Time Projection Chamber. 中国科学院近代物理研究所和兰州重离子研究装置年报:英文版[J]. 2019, 50-51, http://lib.cqvip.com/Qikan/Article/Detail?id=7103854697.
[10] Xu, XD, Mukha, I, Grigorenko, L V, Scheidenberger, C, Acosta, L, Casarejos, E, Chudoba, V, Ciemny, A A, Dominik, W, DuenasDiaz, J, Dunin, V, Espino, J M, Estrade, A, Farinon, F, Fomichev, A, Geissel, H, Golubkova, T A, Gorshkov, A, Janas, Z, Kaminski, G, Kiselev, O, Knobel, R, Krupko, S, Kuich, M, Litvinov, Yu A, MarquinezDuran, G, Martel, I, Mazzocchi, C, Nociforo, C, Orduz, A K, Pfuetzner, M, Pietri, S, Pomorski, M, Prochazka, A, Rymzhanova, S, SanchezBenitez, A M, Sharov, P, Simon, H, Sitar, B, Slepnev, R, Stanoiu, M, Strmen, P, Szarka, I, Takechi, M, Tanaka, Y K, Weick, H, Winkler, M, Winfield, J S. Spectroscopy of excited states of unbound nuclei Ar-30 and Cl-29. PHYSICAL REVIEW C[J]. 2018, 97(3): https://www.webofscience.com/wos/woscc/full-record/WOS:000426630200001.
[11] Mukha, I, Grigorenko, L, V, Kostyleva, D, Acosta, L, Casarejos, E, Ciemny, A A, Dominik, W, Duenas, J A, Dunin, V, Espino, J M, Estrade, A, Farinon, F, Fomichev, A, Geissel, H, Gorshkov, A, Janas, Z, Kaminski, G, Kiselev, O, Knoebe, R, Krupko, S, Kuich, M, Litvinov, Yu A, MarquinezDuran, G, Martel, I, Mazzocchi, C, Nociforo, C, Orduz, A K, Pfutzner, M, Pietri, S, Pomorski, M, Prochazka, A, Rymzhanova, S, SanchezBenitez, A M, Scheidenberger, C, Sharov, P, Simon, H, Sitar, B, Slepnev, R, Stanoiu, M, Strmen, P, Szarka, I, Takechi, M, Tanaka, Y K, Weick, H, Winkler, M, Winfield, J S, Xu, X, Zhukov, M, V. Deep excursion beyond the proton dripline. I. Argon and chlorine isotope chains. PHYSICAL REVIEW C[J]. 2018, 98(6): https://www.webofscience.com/wos/woscc/full-record/WOS:000452677500001.
[12] Grigorenko, L, V, Mukha, I, Kostyleva, D, Scheidenberger, C, Acosta, L, Casarejos, E, Chudoba, V, Ciemny, A A, Dominik, W, Duenas, J A, Dunin, V, Espino, J M, Estrade, A, Farinon, F, Fomichev, A, Geissel, H, Gorshkov, A, Janas, Z, Kaminski, G, Kiselev, O, Knoebel, R, Krupko, S, Kuich, M, Litvinov, Yu A, MarquinezDuran, G, Martel, I, Mazzocchi, C, Nikolskii, E Yu, Nociforo, C, Orduz, A K, Pfuetzner, M, Pietri, S, Pomorski, M, Prochazka, A, Rymzhanova, S, SanchezBenitez, A M, Sharov, P, Simon, H, Sitar, B, Slepnev, R, Stanoiu, M, Strmen, P, Szarka, I, Takechi, M, Tanaka, Y K, Weick, H, Winkler, M, Winfield, J S, Xu, X, Zhukov, M, V. Deep excursion beyond the proton dripline. II. Toward the limits of existence of nuclear structure. PHYSICAL REVIEW C[J]. 2018, 98(6): [13] Golubkova, T A, Xu, X D, Grigorenko, L V, Mukha, I G, Scheidenberger, C, Zhukov, M V. Transition from direct to sequential two-proton decay in s-d shell nuclei. PHYSICS LETTERS B[J]. 2016, 762: 263-270, http://dx.doi.org/10.1016/j.physletb.2016.09.034.
[14] Xu Xiaodong, Mukha I, Acosta L, Casarejos E, Ciemny A A, Dominik W, Duenasdiaz J, Dunin V, Espino J M, Estrade A, Farinon F, Geissel H, Fomichev A, Golubkova T A, Gorshkov A, Grigorenko L V, Janas Z, Kaminski G, Kiselev O, Knobel R, Krupko S, Kuich M, Litvinov Yu A, Marquinezduran G, Martel I, Mazzocchi C, Nociforo C, Orduz A K, Pfutzner M, Pietri S, Pomorski M, Prochazka A, Rymzhanova S, Sanchezbenitez A M, Scheidenberger C, Sharov P, Simon H, Sitar B, Slepnev R, Stanoiu M, Strmen P, Szarka I, Takechi M, Tanaka Y K, Weick H, Winkler M, Winfield J S. Revisit to Two-Proton Radioactivity of ~(19)Mg and Observation of Two-Proton Decay of ~(30)Ar. NUCLEAR PHYSICS REVIEW[J]. 2016, 33(2): 197-202, http://sciencechina.cn/gw.jsp?action=detail.jsp&internal_id=5804944&detailType=1.
[15] Mukha, I, Grigorenko, L V, Xu, X, Acosta, L, Casarejos, E, Ciemny, A A, Dominik, W, DuenasDiaz, J, Dunin, V, Espino, J M, Estrade, A, Farinon, F, Fomichev, A, Geissel, H, Golubkova, T A, Gorshkov, A, Janas, Z, Kaminski, G, Kiselev, O, Knoebel, R, Krupko, S, Kuich, M, Litvinov, Yu A, MarquinezDuran, G, Martel, I, Mazzocchi, C, Nociforo, C, Orduz, A K, Pfuetzner, M, Pietri, S, Pomorski, M, Prochazka, A, Rymzhanova, S, SanchezBenitez, A M, Scheidenberger, C, Sharov, P, Simon, H, Sitar, B, Slepnev, R, Stanoiu, M, Strmen, P, Szarka, I, Takechi, M, Tanaka, Y K, Weick, H, Winkler, M, Winfield, J S, Zhukov, M V. Observation and Spectroscopy of New Proton-Unbound Isotopes Ar-30 and Cl-29: An Interplay of Prompt Two-Proton and Sequential Decay. PHYSICAL REVIEW LETTERS[J]. 2015, 115(20): https://www.webofscience.com/wos/woscc/full-record/WOS:000364413900005.
[16] Heng, T H, Xu, X D, Niu, Z M, Sun, B H, Guo, J Y. Constraint on the cosmic age from the solar r-process abundances. JOURNAL OF PHYSICS G-NUCLEAR AND PARTICLE PHYSICS[J]. 2014, 41(10): https://www.webofscience.com/wos/woscc/full-record/WOS:000342356500020.
[17] Xu, X D, Sun, B, Niu, Z M, Li, Z, Qian, Y Z, Meng, J. Reexamining the temperature and neutron density conditions for r-process nucleosynthesis with augmented nuclear mass models. PHYSICAL REVIEW C[J]. 2013, 87(1): https://www.webofscience.com/wos/woscc/full-record/WOS:000314094900008.
[18] Meng, J, Chen, Y, Liang, H Z, Niu, Y F, Niu, Z M, Song, L S, Zhao, P W, Li, Z, Sun, B, Xu, X D, Li, Z P, Yao, J M, Long, W H, Niksic, T, Vretenar, D. Mass and lifetime of unstable nuclei in covariant density functional theory. PHYSICA SCRIPTA[J]. 2013, T154: https://www.webofscience.com/wos/woscc/full-record/WOS:000319336900010.
[19] 张珈铭, 徐晓栋, 孙保华. 基于(p,γ)-(γ,p)平衡近似的快质子俘获过程模型及其应用. 物理学报[J]. 2013, 62(13): 132501-1, http://sciencechina.cn/gw.jsp?action=detail.jsp&internal_id=4888253&detailType=1.

科研活动

   
科研项目
( 1 ) 原子核物理中的中微子问题, 参与, 中国科学院计划, 2019-01--2022-12
( 2 ) 丰中子p壳层原子核的产生截面测量, 负责人, 国家任务, 2020-01--2022-12
( 3 ) 丰中子sd壳层原子核的产生截面测量, 负责人, 中国科学院计划, 2020-01--2022-12
参与会议
(1)Charge-changing cross sections of neutron-rich P isotopes   RIBLL合作组第十六次会议   2019-12-20
(2)Search for Two-Proton Radioactivity of 30Ar with In-Flight Decay Spectroscopy   2015-07-06
(3)Search for Two-Proton Radioactivity of 30Ar with In-Flight Decay Spectroscopy   2015-06-07
(4)Two-proton radioactivity of 30Ar by tracking its decay products   2014-09-07
(5)Constraints on neutron density and temperature conditions for r-process with updated nuclear masses   2012-06-11
(6)Constraints on neutron density and temperature conditions for r-process with updated nuclear masses   第十四届全国核结构大会   2012-04-12