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个人信息
个人简介
冯岩,二级教授、博导,等离子体物理与技术研究所所长 联系方式:江苏省苏州市姑苏区,干将东路333号,www.优德88.cpm 本部,物理科技楼259 E-mail: fengyan@suda.edu.cn 教育经历
研究领域
研究方向 复杂(尘埃)等离子体物理实验、理论及模拟; 强耦合等离子体物理; 磁约束聚变等离子体灰尘研究; PK-4(国际空间站微重力复杂等离子体实验); 月尘等离子体环境及相关物理过程; RSX 磁重联实验; 软凝聚态物理; 学术兼职
1、中国力学学会等离子体科学与技术专业委员会委员,低温等离子体基础专业组副组长,2021- 2、载人航天空间科学与应用领域微重力基础物理专家组成员,2019- 3、AAPPS-DPP Scientific Program Committee,2019-;Vice Chair,2021- 4、国际期刊Reviews of Modern Plasma Physics 客座编辑,2022- 5、《中国科学-物理、力学与天文》SCIENCE CHINA Physics, Mechanics & Astronomy 青年编委,2023- 6、Chinese Physics Letters、Chinese Physics B、《物理学报》和《物理》四刊联合青年编委,2024- 7、宇航学会电推进专业委员会委员,2016- 1、江苏省第六期“333高层次人才培养工程”第二层次培养对象,2022
基本信息
职称:教授 院部/部门:物理科学与技术学院 学历: 学位: 毕业学校: 毕业专业:
联系方式
通讯地址: 邮政编码: 电子邮箱:fengyan@suda.edu.cn 联系电话:0512-69156391 传真号码: 办公地点:物理科技楼230;259
www.优德88.cpm
冯岩主持科研项目: 国家自然科学基金委员会面上项目 “尘埃等离子体本征性质及动态调制响应机制的研究”,2022.01-2025.12 团队成员主持项目: 黄栋:国家自然科学基金委员会青年科学基金项目“尘埃等离子体系统热传导过程微观物理机制研究”,2024.01-2025.12 卢少瑜:国家自然科学基金委员会理论物理专款研究项目“尘埃等离子体晶界内耗及其微观动力学机制研究”,2024.01-2024.12 黄栋:国家自然科学基金委员会理论物理专款研究项目“基于isomorph theory研究尘埃等离子体物理量的微观动力学机制”,2023.01-2023.12 卢少瑜:2023年度国家资助博士后研究人员计划(C档)“尘埃等离子体固态物理性质研究”,2024.01-2025.12 黄栋:2023年度江苏省卓越博士后计划“基于液体同构理论研究热导率的微观动力学机制”,2023.09-2025.08 刘壮:国家自然科学基金委员会青年科学基金项目“托卡马克中尘埃与等离子相互作用的模拟研究”,2022.01-2024.12 李威:国家自然科学基金委员会青年科学基金项目“非对称棘轮势场调制二维尘埃等离子体定向输运行为的模拟研究”,2022.01-2024.12
科研团队
副教授:刘壮 博士后研究员:黄栋,卢少瑜 博士研究生:梁晨,徐傲 硕士研究生:俞倪辰,陈鑫,潘道佑,汪朝烨 本科生:马骏豪 工程师:周坤 课题组研究生获得的学术奖励: 2023年11月 学业奖学金特等奖:梁晨、葛振宇 学业奖学金二等奖:俞倪辰 2022年11月 国家奖学金:黄宇 学业奖学金特等奖:朱雯琦 学业奖学金一等奖:卢少瑜 学业奖学金二等奖:沈珏、梁晨、葛振宇、俞倪辰 2021年11月 国家奖学金:孙天越 学业奖学金特等奖:黄栋、卢少瑜、顾亮 学业奖学金一等奖:梁晨 学业奖学金二等奖:曾悦、黄宇、马壮 2020年11月 学业奖学金特等奖:曾悦、朱雯琦 学业奖学金一等奖:丁夏、沈珏 学业奖学金二等奖:黄栋、卢少瑜、孙天越、马壮 2019年10月 学业奖学金特等奖:李威、林炜、卢少瑜 学业奖学金一等奖:孙天越、曾悦 学业奖学金二等奖:黄栋、丁夏、顾亮 2018年10月 学业奖学金特等奖:林炜 学业奖学金一等奖:王康、黄栋 学业奖学金二等奖:丁夏 2017年10月 学业奖学金特等奖:黄栋 学业奖学金一等奖:李威 2016年10月 学业奖学金二等奖:王康 2023年6月,仇鹏伟的硕士论文被评为2023年度www.优德88.cpm 优秀硕士学位论文! 2023年6月,黄栋入选江苏省2023年卓越博士后计划! 2021年9月,李威的博士论文被评为2021年度www.优德88.cpm 优秀博士学位论文! 2020年9月,王康的硕士论文被评为2020年度www.优德88.cpm 优秀硕士学位论文! 2019年4月,李正阳获得在北京举行的复杂等离子体物理研讨会优秀报告奖! 2018年6月,王巧玲获得www.优德88.cpm 优秀毕业生荣誉称号! 2017年7月,黄栋获得在西安举行的第十八届全国等离子体科学技术会议优秀海报奖! 2016年6月,林炜本科毕业论文荣获www.优德88.cpm 物理学部优秀本科毕业论文! 已毕业博士研究生: 李威(2020,南通大学,讲师); 黄栋(2022,www.优德88.cpm ,博后); 卢少瑜(2023,www.优德88.cpm ,博后); 已毕业硕士研究生: 王巧玲(2018,太仓高级中学); 黄栋(2019,www.优德88.cpm 博士生); 王康(2019,中芯国际); 林炜(2020,厦门大学); 李正阳(2020,海光集成电路设计公司); 丁夏(2021,江苏省选调生); 孙天越(2022,太仓实验中学); 仇鹏伟(2022,迈为股份); 顾亮(2022,SK海力士半导体); 曾悦(2022,木渎实验中学); 朱雯琦(2023,锡山高级中学); 沈珏(2023,金瑞泓科技有限公司); 马壮(2023,梅村高级中学空港分校); 黄宇(2023,华天科技昆山有限公司); 葛振宇(2024,相城实验中学);
论文
十一篇代表作
11. S. Lu, D. Huang, C. Liang,andYan Feng* Anelastic internal friction of dislocations in two-dimensional Yukawa solids PHYSICAL REVIEW RESEARCH,Vol. 5, 043116 (2023) 10.C. Liang,D. Huang, S. Lu, andYan Feng* Determining global property of dusty plasma from single particle dynamics using machine learning PHYSICAL REVIEW RESEARCH,Vol. 5, 033086 (2023) 9. W. Li*, D. Huang, C. Reichhardt, C. J. O. Reichhardt, andYan Feng* Bidirectional flow of two-dimensional dusty plasma under asymmetric periodic substrates driven by unbiased external excitations
PHYSICAL REVIEW RESEARCH, Vol. 5, 023008 (2023) 8.D. Huang, M. Baggioli*, S. Lu, Z. Ma, andYan Feng*
Revealing the supercritical dynamics of dusty plasmas and their liquidlike to gaslike dynamical crossover PHYSICAL REVIEW RESEARCH, Vol. 5, 013149 (2023) 7. D. Huang, S. Lu, M. S. Murillo, andYan Feng* Origin of viscosity at individual particle level in Yukawa liquids PHYSICAL REVIEW RESEARCH, Vol. 4, 033064 (2022) 6. Y. He*, B. Ai*, C. Dai, C. Song, R. Wang, W. Sun, F. Liu, andYan Feng* Experimental demonstration of a dusty plasma ratchet rectification and its reversal 5.Yan Feng*, J. Goree, and Bin Liu Observation of temperature peaks due to strong viscous heating in a dusty plasma flow 4.Yan Feng*, J. Goree, and Bin Liu 3.Yan Feng*, J. Goree, and Bin Liu 2.Yan Feng*, J. Goree, and Bin Liu 1. Bin Liu, J. Goree, andYan Feng 截止2024年6月全部论文清单
94. Z. Liu*, H. Xu, X. Xu, N. Wu, Z. Huang, N. Li, Z. Yang, X. Yu, W. Guo, L. Liu, J. Gao, Y. Li, X. He, L. Yan, M. Xu,andYan Feng* Investigation of lithium pellet penetration and ablation in the HL-2A tokamak PHYSICS OF PLASMAS, submitted
93. N. Yu, D. Huang*,andYan Feng* Melting curve of two-dimensional Yukawa systems predicted by isomorph theory PHYSICAL REVIEW E,Vol. 109, 065212 (2024) 92. S. Lu, D. Huang*, Z. Ma,andYan Feng*
Diagnosis of solid-liquid phase transition using hopping particles in 2D dusty plasmas PHYSICS OF PLASMAS,Vol. 31, 063701 (2024) 91. C. Liang, Z. Liu*, J. S. Yuan, Y. Li, Y. Gu, D. Huang, S. Lu, G. Z. Zuo, J. S. Hu,andYan Feng* Safety factor diagnostic for tokamak core plasma from three-dimensional reconstruction of pellet ablation trail REVIEW OF SCIENTIFIC INSTRUMENTS,Vol. 95, 043502 (2024) 90. N. Yu, D. Huang*, S. Lu, S. Khrapak,andYan Feng* Universal scaling of transverse sound speed and its isomorphic property in Yukawa fluids PHYSICAL REVIEW E,Vol. 109, 035202 (2024) 89. X. Chen, C. Liang, S. Lu, D. Huang, andYan Feng* Derivation of shock front evolution with rarefaction wave and its verification in dusty plasma simulations PHYSICS OF PLASMAS,Vol. 31, 023701 (2024)
88.J. Beckers*, J. Berndt, D. Block, M. Bonitz, P. J. Bruggeman, L. Couëdel, G. L. Delzanno,Y. Feng, R. Gopalakrishnan, F. Greiner, P. Hartmann, M. Horányi, H. Kersten, C. A. Knapek, U. Konopka, U. Kortshagen, E. G. Kostadinova, E. Kovačević, S. I. Krasheninnikov, I. Mann, D. Mariotti, L. S. Matthews, A. Melzer, M. Mikikian, V. Nosenko, M. Y. Pustylnik, S. Ratynskaia, R. M. Sankaran, V. Schneider, E. J. Thimsen, E. Thomas, H. M. Thomas, P. Tolias, and M. van de Kerkhof Physics and applications of dusty plasmas: The perspectives 2023 (invitedperspectives) PHYSICS OF PLASMAS,Vol. 30, 120601 (2023)
87.S. Lu,D. Huang,C. Liang,andYan Feng* Anelastic internal friction of dislocations in two-dimensional Yukawa solids PHYSICAL REVIEW RESEARCH,Vol. 5, 043116 (2023) 86.C. Liang,D. Huang, S. Lu, andYan Feng* Determining global property of dusty plasma from single particle dynamics using machine learning PHYSICAL REVIEW RESEARCH,Vol. 5, 033086 (2023)
85. Z. Ge, D. Huang, S. Lu, C. Liang, M. Baggioli*, andYan Feng* Observation of fast sound in two-dimensional dusty plasma liquids PHYSICAL REVIEW E, Vol. 107, 055211 (2023) 84. W. Li*, D. Huang, C. Reichhardt, C. J. O. Reichhardt, andYan Feng* Bidirectional flow of two-dimensional dusty plasma under asymmetric periodic substrates driven by unbiased external excitations PHYSICAL REVIEW RESEARCH, Vol. 5, 023008 (2023) 83. W. Zhu, C. Reichhardt, C. J. O. Reichhardt, andYan Feng* Dynamical commensuration effect in a two-dimensional Yukawa solidmodulated by periodic substrates PHYSICS OF PLASMAS,Vol. 30, 043702 (2023) 82. D. Huang, M. Baggioli*, S. Lu, Z. Ma, andYan Feng* Revealing the supercritical dynamics of dusty plasmas and their liquidlike to gaslike dynamical crossover PHYSICAL REVIEW RESEARCH,Vol. 5, 013149 (2023) 81. C. Liang, Z. Ma, Z. Sun, X. Zhang, X. You, Z. Liu, G. Zuo, J. Hu, andYan Feng* Demonstration of object location, classification, and characterization by developed deep learning Dust Ablation Trail Analysis code package using plasma jets REVIEW OF SCIENTIFIC INSTRUMENTS, Vol. 94, 023506 (2023) 80. S. Lu, D. Huang, A. Shahzad, andYan Feng* Bulk moduli of two-dimensional Yukawa solids and liquids obtained from periodic compressions PLASMA SCIENCE AND TECHNOLOGY, Vol. 25, 035002 (2023) 79. Z. Ma, W. Li, Z. Li, Z. Huang, J. Shen, D. Huang, Y. Huang, Z. Liu, L. Gu, S. Lu, X. He, L. Yan, M. Xu, andYan Feng* Experimental Investigation of Stereocamera's Error to Optimize Dust Observation on HL-2A Tokamak JOURNAL OF PLASMA PHYSICS, Vol. 88, 905880514 (2022) 78. Y. Huang, C. Reichhardt, C. J. O. Reichhardt, andYan Feng* Superlubric-pinned transition of a two-dimensional solid dusty plasma under a periodic triangular substrate PHYSICAL REVIEW E, Vol. 106, 035204 (2022) 77. P. Qiu andYan Feng* Fast particles overtaking shock front in two-dimensional Yukawa solids PHYSICAL REVIEW E, Vol. 106, 015203 (2022) 76. D. Huang, S. Lu, M. S. Murillo, andYan Feng* Origin of viscosity at individual particle level in Yukawa liquids PHYSICAL REVIEW RESEARCH, Vol. 4, 033064 (2022) 75. W. Zhu, C. Reichhardt, C. J. O. Reichhardt, andYan Feng* Directional locking in a two-dimensional Yukawa solid modulated by a two-dimensional periodic substrate PHYSICAL REVIEW E, Vol. 106, 015202 (2022) 74.杜诚然,冯岩,王晓钢 空间站微重力复杂(尘埃)等离子体实验研究进展 载人航天, Vol. 28, 323 (2022) 73. J. Shen, S. Lu, T. Sun, andYan Feng* Elastic-plastic transition of compressional shocks in a perfect 2D Yukawa crystal PHYSICS OF PLASMAS, Vol. 29, 053701 (2022) 72. Y. Zeng, Z. Ma, andYan Feng* Determination of best particle tracking velocimetry method for two-dimensional dusty plasmas REVIEW OF SCIENTIFIC INSTRUMENTS, Vol. 93, 033507 (2022) 71. S. Lu, D. Huang, andYan Feng* Shear softening and hardening of a two-dimensional Yukawa solid PHYSICAL REVIEW E, Vol. 105, 035203 (2022) 70. Y. Huang, W. Li, C. Reichhardt, C. J. O. Reichhardt, andYan Feng* Phonon spectra of a two-dimensional solid dusty plasma modified by two-dimensional periodic substrates PHYSICAL REVIEW E, Vol. 105, 015202 (2022) 69. Z. Liu*, R. Ding, X. Xu, N. Li, G. Deng, J. Sun, D. Wang, andYan Feng* Modelling of small tungsten dust grains in EAST tokamak with NDS-BOUT++ PHYSICS OF PLASMAS, Vol. 28, 122503 (2021) 68. P. Qiu, T. Sun, andYan Feng* Observation of the solid and liquid separation after the shock propagation in a two-dimensional Yukawa solid (Editor's Pick Featured) PHYSICS OF PLASMAS, Vol. 28, 113702 (2021) Reported byScilighthttps://doi.org/10.1063/10.0007290 67. T. Sun, M. S. Murillo, andYan Feng* PHYSICS OF PLASMAS, Vol. 28, 103703 (2021) 66. D. Huang, S. Lu, X. Shi, J. Goree, andYan Feng* Fluctuation theorem convergence in a viscoelastic medium demonstrated experimentally using a dusty plasma PHYSICAL REVIEW E, Vol. 104, 035207 (2021) 65. S. Lu, D. Huang, andYan Feng* PHYSICAL REVIEW E, Vol. 103, 063214 (2021) 64. T. Sun andYan Feng* PHYSICS OF PLASMAS, Vol. 28, 063702 (2021) 63.Yan Feng*, W. Li*, C. Reichhardt, C. J. O. Reichhardt, and M. S. Murillo PHYSICS OF PLASMAS, Vol. 28, 040501 (2021) 62. D. Huang, S. Lu, andYan Feng* PHYSICAL REVIEW E, Vol. 103, 013211 (2021); Vol. 105, 059903(E) (2022) 61. X. Ding, S. Lu, T. Sun, M. S. Murillo, andYan Feng* PHYSICAL REVIEW E, Vol. 103, 013202 (2021) 60. L. Gu, W. Li, C. Reichhardt, C. J. O. Reichhardt, M. S. Murillo, andYan Feng* Continuous and discontinuous transitions in the depinning of two-dimensional dusty plasmas on a one-dimensional periodic substrate PHYSICAL REVIEW E, Vol. 102, 063203 (2020) 59. D. Huang, S. Lu, andYan Feng* Reply to "Comment on 'Shear modulus of two-dimensional Yukawa or dusty-plasma solids obtained from the viscoelasticity in the liquid state' " PHYSICAL REVIEW E, Vol. 101, 057202 (2020) 58. W. Li, C. Reichhardt, C. J. O. Reichhardt, M. S. Murillo, andYan Feng* 57. Y. He*, B. Ai*, C. Dai, C. Song, R. Wang, W. Sun, F. Liu, andYan Feng* 56. W. Lin, M. S. Murillo, andYan Feng* PHYSICAL REVIEW E, Vol. 101, 013203 (2020) 55. W. Lin, M. S. Murillo, andYan Feng* PHYSICAL REVIEW E, Vol. 100, 043203 (2019); Vol. 101, 019902(E) (2020) 54. W. Li, K. Wang, C. Reichhardt, C. J. O. Reichhardt, M. S. Murillo, andYan Feng* PHYSICAL REVIEW E, Vol. 100, 033207 (2019) 53.Yan Feng*, S. Lu, K. Wang, W. Lin, and D. Huang 52. K. Wang, D. Huang, andYan Feng* 51. S. Lu, K. Wang, andYan Feng* 50. K. Wang, W. Li, D. Huang, C. Reichhardt, C. J. O. Reichhardt, M. S. Murillo, andYan Feng* 49. W. Li, D. Huang, K. Wang, C. Reichhardt, C. J. O. Reichhardt, M. S. Murillo, andYan Feng* 48. W. Sun, M. Schwabe, H. M. Thomas, A. M. Lipaev, V. I. Molotkov, V. E. Fortov,Yan Feng, Y.-F. Lin, J. Zhang, Y. Guo, and C.-R. Du 47. K. Wang, D. Huang, andYan Feng* 46.Yan Feng*, D. Huang, and W. Li 45. Q. Wang, K. Wang, andYan Feng* 44.Yan Feng*, W. Lin, and M. S. Murillo 43. D. Huang, W. Li, W. Lin, andYan Feng* 42. A. Shahzad, M.-G. He, S. I. Haider, andYan Feng 41. W. Li, W. Lin, andYan Feng* 40.Yan Feng*, W. Li, Q. Wang, and W. Lin 39.Yan Feng*, W. Lin, W. Li, and Q. Wang 38.Yan Feng*, J. Goree, Zach Haralson, Chun-Shang Wong, A. Kananovich, and Wei Li 37.Yan Feng*, J. Goree, Bin Liu, Lei Wang, and Wen-de Tian 36. Roman Belousov*, E. G. D. Cohen*, Chun-Shang Wong*, John A. Goree, andYan Feng* 35. J. Sears, T. P. Intrator,Y. Feng, H. O. Swan, J. Klarenbeek, and K. Gao 34. J. Sears,Y. Feng, T. P. Intrator, T. E. Weber, and H. O. Swan 33.Yan Feng*, J. Goree, Bin Liu, T. P. Intrator, and M. S. Murillo 32. T. P. Intrator, L. Dorf, X. Sun,Y. Feng, J. Sears, and T. Weber 31. T. P. Intrator, X. Sun, L. Dorf, J. A. Sears,Y. Feng, T. E. Weber, and H. O. Swan 30. J. Goree, Bin Liu andYan Feng 29.Yan Feng*, J. Goree, and Bin Liu 28.Yan Feng*, J. Goree, and Bin Liu 27.Yan Feng*, J. Goree, and Bin Liu 26. Bin Liu, J. Goree, andYan Feng 25.Yan Feng*, J. Goree, and Bin Liu 24.Yan Feng*, J. Goree, Bin Liu, and E. G. D. Cohen 23. W.D.Suranga Ruhunusiri, J. Goree,Yan Feng, and Bin Liu 22.Yan Feng*, J. Goree, and Bin Liu 21.Yan Feng*, J. Goree, and Bin Liu 20.Yan Feng*, J. Goree, and Bin Liu 19. Bin Liu, J. Goree, andYan Feng 18.Yan Feng*, J. Goree, and Bin Liu 17.Yan Feng*, J. Goree, and Bin Liu 16. Bin Liu, J. Goree, andYan Feng 15.Yan Feng*, Bin Liu, and J. Goree 14.Yan Feng*, J. Goree, and Bin Liu 13.Y. Feng*, J. Goree, and Bin Liu 12. G.Z. Sun, P.H. Wu,Y. Feng, Z.M. Ji, S.Z. Yang, M. Wang, W.W. Xu, and L. Kang 11. H.W. Cheng, X.J. Zhang, S.T. Zhang,Y. Feng, Y.F. Chen, Z.G. Liu, and G.X. Cheng 10. X. Yang, X.L. Wu,Y. Feng, J. Li, and M. Jiang 9. M. Wang,Y. Feng, G.W. Yu, W.T. Gao, S. Zhong, R.W. Peng, and N.B. Ming 8. Y. Wang, Y. Cao, M. Wang, S. Zhong, M.Z. Zhang,Y. Feng, R.W. Peng, X.P. Hao, and N.B. Ming 7. C.H. Song, W. Li, J. Ma, J. Gu, Y.Y. Yao,Y. Feng, X.M. Lu, J.S. Zhu, Y.N. Wang, W.L.H. Chan, and C.L. Choy 6. Y.H. Wang, G.D. Xu, X.J. Zhang,Y. Feng, W.S. Tang, G.X. Cheng, and Y.Y. Zhu 5. R.Z. Zhang, W.Y. Zhu, M.Y. Xia, andY. Feng 4. Z.J. Chen, Y. Wang,Y. Feng, X.Q. Jiang, C.Z. Yang, and M. Wang 3. J. Zhu, Z.G. Liu, andY. Feng 2. G.Z. Sun, P.H. Wu,Y. Feng, S.X. Fan, Z.M. Ji, S.Z. Yang, M. Wang, W.W. Xu, and L. Kang 1. Q.Y. Shao, A.D. Li, H.Q. Ling, D. Wu, Y. Wang,Y. Feng, S.Z. Yang, Z.G. Liu, M. Wang, and N.B. Ming
荣誉奖励
开授课程
普通物理II (2016春季,2017秋季,2018春季,2019春季,2020春季,2021春季,2022春季,2023春季,国际班) 等离子体物理与技术(2020秋季,2021春季,2023春季,研究生) 电磁学 (2015秋季,国际班)
招生信息
课题组研究经费充足,研究课题为国家重大需求,毕业生在学术界、工业界均供不应求。 |