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胡广月 副教授
发布人:龚美静  发布时间:2018-05-04   浏览次数:1290

个人简历

HuGY照片 201308

胡广月,男,理学博士。

职称:副教授

邮箱:gyhu@ustc.edu.cn

单位:威尼斯城官方网站

地址:安徽省合肥市金寨路96号中国科学技术大学威尼斯城官方网站

 

学习和工作经历

1999-2006,中国科学技术大学近代物理系,本科、硕士;

2007-2010,中科院上海光学精密机械研究所,等离子体物理,博士;

2010-2016,中国科学技术大学物理学院,博士后、特任副教授;

2017至今,中国科学技术大学物理学院,副教授。

 

研究方向和特色

1、脉冲强磁场下激光物质相互作用。研发用于高功率激光装置的脉冲强磁场仪器设备,建造脉冲强磁场耦合强激光的实验装置。实验室研究磁化天体和空间物理现象、聚变物理,包括宇宙高能粒子加速、天体喷流、地磁层宏观结构和流体不稳定性等。开发激光等离子体工业应用技术,包括脉冲激光沉积镀膜、极紫外光刻光源等,研制应用于新材料制备、半导体制造的仪器设备。

2、激光驱动的强辐射源及其应用。用于激光聚变的硬X光源、硬X光诊断仪器、X光成像技术;研发激光驱动的台式化类同步辐射光源技术和仪器;开发激光驱动的新型太赫兹光源和应用技术。

 

研究成果简介

1、脉冲强磁场下激光物质相互作用。自主研发了国内首个脉冲强磁场耦合强激光的实验装置,是国际上最有代表性的装置之一,也应用于神光系列大型激光装置。国内最早开展外加强磁场下激光等离子体的实验研究,提出并实验研究充磁黑腔的激光聚变新方案,实验室内重现了地磁层钡粒子释放实验的抗磁腔和流体不稳定性发展过程。最近,在磁准直天体外流形貌演化、磁化激波粒子加速、脉冲激光沉积镀膜等方面也取得重要进展。
    2
、激光驱动的强辐射源及其应用。国内最早进行纳秒脉冲激光驱动的1-10keV能区的热辐射X光源的实验研究,演示了多个增强冕区热辐射X光源亮度的新方案;国内最早成功演示了固体密度等离子体的X光散射诊断技术。国内最早在实验和模拟上研究皮秒激光驱动的~100keV能区的X光源以及核反应阶段聚变靶丸的X光诊断技术。独立发展了10keV-20MeV能区的硬X光诊断仪器(透射弯晶谱仪、康普顿反冲电子谱仪、单光子计数测谱技术、滤片堆栈谱仪等),被国内激光聚变同行广泛使用、关键技术参数国际领先。和合作者一起独立掌握了弯晶元器件的高质量制作技术、并批量化生产,打破了美国在这方面的技术垄断。国际上首次实验发现飞秒强激光辐照光栅靶的准制高能电子发射现象和表面高能电子加速增强现象。

 

指导研究生情况

已培养毕业博士5名、硕士2名。

 

承担项目情况:

作为负责人承担国家重大科技专项课题2项、中科院先导专项(B)课题1项、863项目课题1项、国家自然科学基金面上项目2项、青年项目1项、中科院重点实验室重要方向培育项目2项、博士后基金特别资助1项、面上资助1项、国家重点实验室开放基金多项等十多个研究项目或课题。近10年累计科研经费近2000万。

 

学术奖励、论文和学术职务等:

荣获安徽省优秀硕士论文奖(2008)、蔡诗东等离子体物理奖(2011)863项目优秀课题奖(2015)、国家重大科技专项优秀课题奖(2019)等学术奖励。

Physics of Plasmas, Plasma Physics and Controlled Fusion等国内外学术刊物上发表论文40余篇。兼任流体物理研究所客座研究员、中科院重大专项总体技术组成员、以及Phys. Plasmas Rev. Sci. Instrum. Opt. Express Laser Part. Beam COL CPB PSST TST、《物理学报》、《光学学报》、《强激光与粒子束》等学术杂志审稿人等职务。

 

部分学术论文:

Hui-bo Tang,Guang-yue Hu*, Yi-han Liang et alObservation of large Larmor radius instability in laser plasma expanding into a 10 T external magnetic field, Phys. Plasmas 27, 022108 (2020)

 

Peng Hu,Guang-yue Hu*, Yu-lin Wang et alPulsed magnetic field device for laser plasma experiments at Shenguang-II laser facility, Rev. Sci. Instrum. 91, 014703 (2020)

 

Yu-lin Wang,Guang-yue Hu*, Peng Hu et alCompact pulsed intense magnetic field generator for Shenguang-II upgrade laser facility, Journal of Instrumentation 14, P09024 (2019)

 

Yu-lin Wang,Guang-yue Hu*, Peng Hu et alPortable pulsed magnetic field generator for magnetized laser plasma experiments in low vacuum environments, Rev. Sci. Instrum. 90, 075108 (2019)

 

Tao Yang, Guang-yue Hu*, Peng Yuan et al, Abnormal spectral distortion of silicon sensors-based single photon counting charge coupled device (PIXIS-XB: 1300R) in detecting laser plasma x-ray source of 20-100keV, Plasma Phys. Control. Fusion 61, 095008 (2019)

 

Hui-bo Tang,Guang-yue Hu*, Yi-han Liang et alConfinement of laser plasma expansion with strong external magnetic field, Plasma Phys. Control. Fusion60, 055005 (2018)

W. Q. Wei, X. H. Yuan, Y. Fang et al, Proton acceleration from vacuum-gapped double-foil target with low-contrast picosecond intense laser, Phys. Plasmas25, 073108 (2018)

Dawei Yuan, Yutong Li, Tao Tao et al, Laboratory Investigation of Astrophysical Collimated Jets with Intense Lasers, Astrophys. J.860, 146 (2018)

G. Y. Liang, J. Y. Zhong, H. G. Wei et al, Laboratory Analog of Heavy Jets Impacting a Denser Medium in Herbig-Haro (HH) Objects, Astrophys. J.868, 56 (2018)

 

Hang Li, Dong Yang, San-wei Li et al, Observation of hydrodynamic phenomena of plasma interaction in hohlraums, ACTA PHYSICA SINICA67, 235201 (2018)

 

Ya-qin Wang, Guang-yue Hu*, Bin Zhao et al, Spectrally smooth X-ray source produced by laser direct driven DT implosion target on SG-III laser facility, ACTA PHYSICA SINICA66, 115202 (2017)

 

Ming-hai Yu, Guang-yue Hu*, Ning An et al, Hard x-ray transmission curved crystal spectrometers (10–100 keV) for laser fusion experiments at the ShenGuang-III laser facilityHigh Power Laser Science and Engineering4, e2 (2016)

 

T. , J.  Z. C.  Frequency mismatch in stimulated scattering processes: An important factor for the transverse distribution of scattered lightPhys. Plasmas23, 063303 (2016)

 

Di Guang-yue Coherent dynamic structure factors of strongly coupled plasmas: A generalized hydrodynamic approachPhys. Plasmas23, 052707 (2016)

 

L. Guo, S.W. Li, Z.C. Li et al, Multiple angle measurement and modeling of M-band x-ray fluxes from vacuum hohlraumPhys. Plasmas23, 092709 (2016)

 

Shao-yong Tu, Yong-teng Yuan, Guang-yue Hu*et al, Dependence of optimal initial density on laser parameters for multi-keV x-ray radiators generated by nanosecond laser-produced underdense plasmaPhys. Plasmas23, 013102 (2016)

 

Wei-zhen Bin Guang-yue Huet al, Influence of spatial geometrical curvature on nonlocal electron heat transport in expanding plasmasACTA PHYSICA SINICA64 ,195201(2016)

 

T. , J.  Z.C. et al, Mitigating stimulated scattering processes in gas-filled Hohlraums via external magnetic fieldsPhys. Plasmas22,092706 (2015)

 

H. T.M. J.M. et al, Radiation-ablated plasma in a small hole, Phys. Plasmas22, 072705 (2015)

 

Yi-han Guang-yue Hu*, Peng  Temporal evolutions of the plasma density and temperature of laser-produced plasma expansion in an external transverse magnetic fieldACTA PHYSICA SINICA64, 125204 (2015)

 

Guang-yue Hu*, Yi-han Liang, Fa-lun Song et al, A 7 T Pulsed Magnetic Field Generator for Magnetized Laser Plasma Experiments,  Plasma Sci. Tech.17, 134-140 (2015)

 

T. Gong, Z.C. Li, X.H. Jiang et al, Development of Thomson scattering system on Shenguang-III prototype laser facility, Rev. Sci. Instrum.86, 023501 (2015)

 

涂绍勇,胡广月*,缪文勇, 钛空腔靶高强度keV X射线源的实验研究,强激光与粒子束27, 032021 (2015)

 

C.  Study of the Performance of a Streaked Optical Pyrometer System for Temperature Measurement of Shocked MaterialsPlasma Sci. Tech.16, 571-576 (2014)

 

Shao-yong Guang-yue *, Wen-yong Efficient multi-keV x-ray source generated by nanosecond laser pulse irradiated multi-layer thin foils target, Phys. Plasmas21, 043107 (2014)

 

于明海,胡广月*,杨涛等,透射式柱面弯晶谱仪的单滤片能量刻度方法,强激光与粒子束26, 102006 (2014)

 

龙城德,赵斌,袁鹏等,小焦斑纳秒激光烧蚀铝平面靶的数值研究,强激光与粒子束26, 102005 (2014)

 

C.  Z.B. B.  Investigation of radiation flux in certain band via the preheat of aluminum sample, Phys. Plasmas20, 122706 (2013)

 

H.  Y.D. L.F.  Variations of implosion asymmetry with hohlraum length and time in indirect-drive inertial confinement fusion, ACTA PHYSICA SINICA62, 225204 (2013)

 

T.  Z.C.  B.  et al, Noise sources and competition between stimulated Brillouin and Raman scattering: A one-dimensional steady-state approach, Phys. Plasmas20, 092702 (2013)

 

X.D.  J.Y. G.H. et al, A High-Efficiency X-Ray Crystal Spectrometer for X-Ray Thomson Scattering, Plasma Sci. Tech.15, 755-759 (2013)

 

Guang-yue Hu*, X.D. Zhang, J. Zheng et al, Demonstration of X-ray Thomson Scattering on Shenguang-II Laser Facility, Plasma Sci. Tech.14, 864-870 (2012)

 

Y. BaiC. LiP Liu et al, Characterizing the polarity of a few-cycle infrared laser pulse, Appl. Phys. B: Lasers and Optics106, 45~49 (2012)

 

张小丁,张继彦,胡广月等,X射线汤姆孙散射在温稠密物质研究中的应用,物理41323-328 (2012)

 

Guang-yue Hu*, An-le Lei, Jing-wei Wang et al, Enhanced surface acceleration of fast electrons by using subwavelength grating targetsPhys. Plasmas17, 083102 (2010)

 

Guang-yue Hu*, An-le Lei, Wen-tao Wang et al, Collimated hot electron jets generated from subwavelength grating targets irradiated by intense short-pulse laserPhys. Plasmas17, 033109 (2010)

 

Guang-yue Hu*, Bai-fei Shen, An-le Lei et al, Transition-Cherenkov radiation of terahertz generated by super-luminous ionization front in femtosecond laser filamentLaser Part. Beams28, 399~407 (2010)

 

Guang-yue Hu*, An-le Lei, Bai-fei Shen et al, Single-shot coherent detection of terahertz pulse with broadband spectral coverage, Phys. Plasmas 16, 043116 (2009)

 

Guang-yue Hu*, Ji-yan Zhang, Jian Zheng et al, Angular distribution and conversion of multi-keV L-shell X-ray sources produced from nanosecond laser irradiated thick-foil Targets, Laser Part. Beams26, 661~670 (2008)

 

Guang-yue Hu*, Jian Zheng, Bai-fei Shen et al, Characterization of a multi-keV x-ray source produced by nanosecond laser irradiation of a solid target The influence of laser focus spot and target thicknessPhys. Plasmas15, 023103 (2008)

 

C.K. WangL.Y. KuangZ.B. Wang et al, Phase-type quantum-dot-array diffraction

Grating, Rev. Sci. Instrum.79, 123502 (2008)

 

Guang-yue Hu, Shen-ye Liu, Jian Zheng et al, Efficient K-shell x-ray sources produced with titanium foils, Phys. Plasmas14, 033103 (2007)

 

胡广月, 刘慎业, 张继彦等,长脉冲keV X射线源的辐射特征,强激光与粒子束19, 771~776 (2007)

 

 

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