马修泉博士
联系电话:****
  • 所在单位:华中科技大学
  • 所在城市:武汉
  • 邮箱:xma****@hust.edu.cn
  • 通讯地址:湖北省武汉市洪山区珞喻路1037号
详细 · 介绍
Expert introduction

马修泉(Ma Xiuquan,Researcher),男,1980年出生于黑龙江省哈尔滨市,1999年进入北京大学物理系物理学专业,2003年至2006年于北京大学量子信息与测量教育部重点实验室从事激光冷却、玻色爱因斯坦凝聚和实验量子力学等方面的研究并获得无线电物理的硕士学位,2006年至2011年于美国密歇根大学安娜堡分校超快光学中心从事大功率光纤激光器及光纤光学方面的研究并获得电气工程学博士学位,2011年至2015年担任美国JDSU公司(后重组为Lumentum公司)前沿研发部高级主任工程师并负责大功率激光器和激光应用方面的创新工作,2015年底加入华中科技大学机械学院从事激光器与激光应用方面的研究。


研究方向

1.全谱全域激光与材料相互作用机理 
2.新型高功率激光器的研制与应用
3.高功率激光器在医疗、集成电路、显示半导体等领域的前沿应用
4.高功率激光器在精密金属加工领域的光源、工艺、装备开发与应用

科研项目

1.“基于行星系光束的铝合金中厚板激光焊接气孔抑制方法”,国家自然科学基金面上项目,56万,项目负责人
2.“高功率光纤激光驱动 13.5nm 极紫外光刻光源的机理与优化研究”,广东省基础与应用基础重大项目,4560万元,项目第二负责人
3.“集成实时反馈及低损传导性能的血管内介入激光消融系统研制”,国家自然科学基金重大科研仪器研制项目,718.65万元,项目第二负责人
4.“高速高精万瓦级光纤激光切割工艺与装备”,广东省科技计划项目,1600万元,项目负责人
5.“超短脉冲、单频及中红外激光材料与器件关键技术”,广东省重点领域研发计划项目,1000万元,项目负责人

论文专著与专利

代表性论文:
[1]XU T, ZHOU S, MA X, WU H, ZHANG L, LI M. Significant reinforcement of mechanical properties in laser welding aluminum alloy with carbon nanotubes added[J]. Carbon, 2022, 191(36-47).

[2]XU T, ZHOU S, WU H, HONG C, MA X. Effect of nickel interlayer thickness on lap joint laser welding for aluminium-steel dissimilar materials[J]. Science And Technology Of Welding And Joining, 2022: 1-10.

[3]ZHANG L, WU H, WEN J, LI M, SHAO X, MA X. Glass to aluminum joining by forming a mechanical pin structure using femtosecond laser[J]. Journal Of Materials Processing Technology, 2022, 302: 117504.

[4]LI L, MA X. Adiabaticity analysis of multimode optical fiber tapers in phase space[J]. Journal of the Optical Society of America B, 2021, 38(12): 3632.

[5]XU T, ZHOU S, WU H, MA X, LIU H, LI M. Dissimilar joining of low-carbon steel to aluminum alloy with TiC particles added in a zero-gap lap joint configuration by laser welding[J]. Materials Characterization, 2021, 182: 111574.

[6]ZHOU S, XU T, HU C, WU H, LIU H, MA X. Utilizing carbon nanotubes in ceramic particle reinforced MMC coatings deposited by laser cladding with Inconel 625 wire[J]. Journal of Materials Research and Technology, 2021, 13: 2026-2042.

[7]ZHOU S, XU T, HU C, WU H, LIU H, MA X. Effect of different topologies on microstructure and mechanical properties of multilayer coatings deposited by laser cladding with Inconel 625 wire[J]. Surface and Coatings Technology, 2021, 421: 127299.

[8]ZHOU S, XU T, HU C, WU H, LIU H, MA X. A comparative study of tungsten carbide and carbon nanotubes reinforced Inconel 625 composite coatings fabricated by laser cladding[J]. Optics & Laser Technology, 2021, 140: 106967.

[9]HU C, MA X Q, WANG C M, ZHOU S W, WU H, SUN K X. High-quality rapid fabrication method of a D-shaped optical fiber based on a CO2 laser[J]. Optical Materials Express, 2021, 11(7): 2025-2036.

[10]ZHU S, LI J, LI L, SUN K, HU C, SHAO X, MA X. Impact of the heat load on the laser performance of chirally-coupled-core fibers[J]. Optics Express, 2019, 27(26): 37522-37531.

[11]ZHU S, LI J, LI L, SUN K, HU C, SHAO X, MA X. Mode instabilities in Yb:YAG crystalline fiber amplifiers[J]. Optics Express, 2019, 27(24): 35065.

[12]MA X, ZHU S, LI L, LI J, SHAO X, GALVANAUSKAS A. Finite-difference beam-propagation method for anisotropic waveguides with torsional birefringence[J]. Optics Express, 2018, 26(4): 3995-4003.

[13]LI L, ZHU S, LI J, SHAO X, GALVANAUSKAS A, MA X. All-in-fiber method of generating orbital angular momentum with helically symmetric fibers[J]. Appl Opt, 2018, 57(28): 8182-8186.

[14]MA X, ZHU C, HU I N, KAPLAN A, GALVANAUSKAS A. Single-mode chirally-coupled-core fibers with larger than 50 microm diameter cores[J]. Optics Express, 2014, 22(8): 9206-9219.

[15]MA X, LIU C-H, CHANG G, GALVANAUSKAS A. Angular-momentum coupled optical waves in chirally-coupled-core fibers[J]. Optics Express, 2011, 19(27): 26515-26528.

[16]MA X, HU I N, GALVANAUSKAS A. Propagation-length independent SRS threshold in chirally-coupled-core fibers[J]. Optics Express, 2011, 19(23): 22575-22581.

[17]MA X Q, XIA L, YANG F, ZHOU X J, WANG Y Q, GUO H, CHEN X Z. Population oscillation of the multicomponent spinor Bose-Einstein condensate induced by nonadiabatic transitions[J]. Physical Review A, 2006, 73(1): 013624.

[18]MA X Q, CHEN S A, YANG F, XIA L, ZHOU X J, WANG Y Q, CHEN X Z. A method for determining the phase transition point of the Bose-Einstein condensation by judging the fitting errors[J]. Chinese Physics Letters, 2006, 23(1): 79-82.

[19]MA X Q, CHEN S, YANG F, XIA L, ZHOU X J, WANG Y Q, CHEN X Z. Observation of F=2 spinor Bose-Einstein condensation in a magnetic field[J]. Chinese Physics Letters, 2005, 22(5): 1106-1109.

[20]MA X, CHEN W, CHEN S, LIU X, CHEN X. Experimental Study of Diode Laser Frequency Stabilization by Zeeman Modulation[J]. Acta sinica quantum optica, 2005, 11(4): 171-175.

荣誉获奖

2006年北京大学信息科学技术学院学术十杰,北京大学
Top Download from April 2014,Optics Express