卢方武(1983~),男,博士/教授,无党派人士,云南省优秀教师,云南省万人计划青年拔尖人才。2006年7月毕业于山西师范大学,获理学学士学位;2009年7月毕业于云南大学,获理学硕士学位;2017年7月毕业于云南大学,获理学博士学位;2009年7月至今在玉溪师范学院从事教学与科研工作。
教学工作
主要承担《力学》、《线性代数》、《概率论与数理统计》、《高等数学II》和《数值计算方法》等课程的教学工作;获省级教学比赛二等奖1次,获云南省“优秀教师”和云南省大学生数学建模竞赛“优秀指导教师”等荣誉称号;指导本科生发表专业期刊论文8篇,指导大学生创新创业训练项目6项;指导学生参加全国大学生数学建模竞赛,获国家奖3项,省级奖8项。
科研工作
研究领域:
从事高能天体物理的研究,主要涉及脉冲星风云与超新星遗迹内部粒子的加速、输运和辐射过程,以及脉冲星风云的动力学演化和对银河宇宙线可能贡献的问题。
科研项目:
1. 国家自然科学基金-地区项目,脉冲星风云粒子的湍流输运与高能辐射研究(12363006),2024.01-2027.12,主持,在研
2. 国家自然科学基金-青年项目,脉冲星风云的高能物理过程与空间辐射特性(11803027),2019.01-2021.12,主持,结题
3. 云南省科技厅应用基础研究计划项目-面上项目,基于空间相关模型研究脉冲星风云的高能物理特性(202201AT070234),2022.06-2025.05,主持,在研
4. 云南省科技厅应用基础研究计划项目-青年项目,Blazar天体高能伽马射线辐射的研究(2012FD055),2013.01-2015.12,主持,结题
5. 云南省地方本科高校(部分)基础研究联合专项项目-面上项目,脉冲星风云的非热辐射过程及空间辐射特性的研究(2017FH001-017),2018.01-2020.12,主持,结题
6. 云南省粒子与天体物理重点实验室开放课题,基于MCMC方法研究脉冲星风云的高能伽马射线辐射特性,2021.10-2023.10,主持,结题
代表性成果:
【如下所列发表于国际知名天体物理学期刊ApJ、A&A和MNRAS上的SCI论文均为个人主导或作为主要合作者开展的研究工作】
[1] Lu, Fang-Wu; Zhu, Bo-Tao; Hu, Wen; Zhang, Li*; Turbulent Diffusion of the Particles within Pulsar Wind Nebulae, The Astrophysical Journal, 2023, 953(1): 116-128
[2] Lu, Fang-Wu; Zhu, Bo-Tao; Hu, Wen; Zhang, Li*; A possible explanation of the TeV emission from the pulsar wind nebula HESS J1825-137, Monthly Notices of the Royal Astronomical Society, 2023, 518(3): 3949-3958
[3] Lu, Fang-Wu; Gao, Quan-Gui; Zhang, Li*; Energy-dependent nebula extent and spatially resolved spectra of the pulsar wind nebula 3C 58, Monthly Notices of the Royal Astronomical Society, 2020, 498(2): 1911-1919
[4] Lu, Fang-Wu; Gao, Quan-Gui; Zhang, Li*; Two-zone Spatially Dependent Model of the Nonthermal Emission from Plerionic Supernova Remnant G21.5-0.9, The Astrophysical Journal, 2020, 889(1): 30-39
[5] Lu, Fang-Wu; Gao, Quan-Gui; Zhu, Bo-Tao; Zhang, Li*; High energy spatially radiative properties of Vela X pulsar wind nebula, Astronomy & Astrophysics, 2019, 624, A144
[6] Lu, Fang-Wu; Gao, Quan-Gui; Zhu, Bo-Tao; Zhang, Li*; Spatially radiative properties of 3C 58 and G21.5−0.9, Monthly Notices of the Royal Astronomical Society, 2017, 472(3): 2926-2936
[7] Lu, Fang-Wu; Gao, Quan-Gui; Zhang, Li*; A Self-consistent and Spatially Dependent Model of the Multiband Emission of Pulsar Wind Nebulae, The Astrophysical Journal, 2017, 834(1): 43-51
[8] Lu, Fang-Wu; Gao, Quan-Gui; Zhang, Li*; Spatial dependence of high energy electrons and their radiations in pulsar wind nebulae, Research in Astronomy and Astrophysics, 2016, 16(6): 90-101
[9] Ren, Ji-Yang; Gao, Quan-Gui; Li, Huai-Zhen; Ma, Ju; Zhao, Shan-Shan; Liu, Ya-li; Lu, Fang-Wu*; Non-thermal emission and spectral evolution properties of G54.1+0.3, Monthly Notices of the Royal Astronomical Society, 2019, 487(4): 5781-5787
[10] Xiao-Chun Deng; Wen Hu*; Fang-Wu Lu*; Ben-Zhong Dai*; Kinetic powers of the relativistic jets in Mrk 421 and Mrk 501, Monthly Notices of the Royal Astronomical Society, 2021, 504(1): 878-887
[11] Zhu, Bo-Tao; Lu, Fang-Wu; Zhou, Bing; Zhang, Li*; Multiband nonthermal radiative model of pulsar wind nebulae: Study of the effects of advection and diffusion, Astronomy & Astrophysics, 2021, 655, A41
[12] Zhu, Bo-Tao; Lu, Fang-Wu; Zhou, Bing; Fang, Jun; Zhang, Li*; Radio and X-ray spectral properties of gamma-ray bursts and pulsar wind nebulae, Monthly Notices of the Royal Astronomical Society, 2022, 509(3): 4143-4148
[13] Peng, Qi-Yong; Bao, Bi-Wen; Lu, Fang-Wu; Zhang, Li*; Multiband Emission up to PeV Energy from the Crab Nebula in a Spatially Dependent Lepto-hadronic Model, The Astrophysical Journal, 2022, 926 (1): 7-15
[14] Zhu, Bo-Tao; Lu, Fang-Wu; Zhang, Li*; A Study of Particle Transport in Young Pulsar Wind Nebulae, The Astrophysical Journal, 2023, 943(2): 89-98
ang-Wu; Zhang, Li*; A Study of Particle Transport in Young Pulsar Wind Nebulae, The Astrophysical Journal, 2023, 943(2): 89-98