个人简介:
李刚,男,生于1977年,研究员,博士生导师,化学激光先进精密光学技术研究组组长,国家光子学标准专业委员会元件与材料分会副主任委员,CSTM FC60/TC04(光学元件标准化委员会)副主任委员,中国光学工程学会理事,中国仪器仪表学会工艺分会常务理事,中国核学会辐射物理分会理事,中国机械工程学会先进制造分会会员,中国激光杂志社青年编委会委员。在国内外公开发表学术论文近30篇,申请和授权专利30余项。参与完成的项目曾先后多次获得省部级奖励。
u 研究方向:
Ø 先进光学制造
Ø 超低损耗激光薄膜制备与表征
Ø 微纳光学
Ø 碟片激光技术
u 主要发表论文:
[1] Theoretical calculation and experimental study on absorption properties of Yb: YAG crystal applied in thin disk laser. Optik, 2017, 130: 511-516.
[2] Study on the Properties of 1319 nm Ultra-High Reflector Deposited by Electron Beam Evaporation Assisted by an Energetic RF Ion Source. Coatings, 2018, 8(2): 74
[3] Research on adjusting device of the high power pump 1.03μm thin disk laser. Optik, 2018, 157: 400-405.
[4] Effect of oxygen vacancy on structural, optical, and photocatalytic properties of ceria films grown by magnetron sputtering deposition. Surface and Coatings Technology, ,2019,358:36-42.
[5] Effects of oxygen flows on optical properties, micro-structure and residual stress of Ta2O5 films deposited by IBS. Optik, 2018, 156, 325-332.
[6] Unveiling exceptionally robust valley contrast in AA- and AB- stacked bilayer WS2. Nanoscale Horiz., 2019, 4, 396-403.
[7] Fabrication of broadband antireflection coatings using wavelength-indirect broadband optical monitoring. Optik, 2018, 156, 325-332.
[8]The application of porous foam structure cooling arrangement system for a thin disk laser. Optik, 2020, 200
[9] Fabrication of broadband antireflection coatings using broadband optical monitoring mixed with time monitoring. Chinese Physics B, 2017, 5: 060.
[10] Transparent and water repellent ceria film grown by atomic layer deposition. Surface & Coatings Technology, 2017, 320:190-195.
[11] Effects of annealing on residual stress in Ta2O5 films deposited by Ion Beam Sputtering. Coatings, 2018,8,150.
[12] Coherent wave packet dynamics in a double-well potential in cavity. International Journal of Modern Physics B, 2018:1850039.
[13] Polarizing beam splitting coating fabricated by wavelength-indirect broadband optical monitoring method [J]. Journal of applied spectroscopy. 2020, 86(6) 1132-1137.
[14] Residual stress prediction and control of Ta2O5/SiO2 multilayer based on layer structure designing. Chinese Optics Letters, 2013, 11: S10701-1-3.
u 已授权专利:
[1] 光学元件温度适应性夹持机构,实用新型,ZL201821007464.5
[2] 一种光束质量转化装置及方法,实用新型,ZL201721746309.0
[3] 一种碟片激光器,实用新型,ZL201721170547.1
[4] 一种带带通分光膜的无色高频蓝\紫光防护镜片及其制备,实用新型,ZL201720261270.7
[5] 一种高热流密度的冷却方法,实用新型,ZL201621351104.8
[6] 一种新型角锥式多冲程泵浦碟片激光器,实用新型,ZL201620590943.9
[7] 一种铣磨用真空吸附调节台,发明专利,ZL201610379395.X
[8] 一种活塞式可调碟片激光器晶体冷却指,发明专利,ZL201510670755.7
[9] 一种四棱镜镀膜时的装夹方法,发明专利,ZL201410719272.7
[10] 一种四棱镜镀膜时的装夹装置,实用新型,201420745781.2
[11] 一种抛光机用调压调速压头,发明专利,ZL201410754055.1
[12] 一种不规则缺角型镜片镀膜装夹用的填补部件,实用新型,ZL2013106911668
[13] 一种新型的光纤装夹方式,实用新型,ZL201220715942.4
[14] 一种新型等离子体辅助磁控溅射镀膜技术,发明专利,ZL2012103588232
[15] 一种金属及半导体薄膜材料光学常数的标定方法,发明专利,ZL201210279625.7
u 已申请专利:
[1] 一种基于化学活化的石英玻璃低温直接键合方法,发明专利,2019111922890
[2] 一种SiC基底表面改性层的制备方法,发明专利,2019112250689
[3] 一种新型射流式碟片激光器晶体冷却装置,发明专利,2019112330645
[4] 一种用于工业机器人末端的轴向浮动抛光装置,发明专利,2019112500294
[5] 一种薄膜应力的消除方法,发明专利,2019112847990
[6] 一种大曲率光学元件曲率半径控制方法,发明专利,2019112848175
[7] 一种用于在线辅助光学元件局部修研修抛的装置,实用新型,201810841156.0
[8] 一种X射线衍射仪用大样品物相分析扩展支架,发明专利,201510982237.9
[9] 一种微通道金属泡沫碟片激光器的实现方法,发明专利,2015108607939
[10] 一种横流气体MOPA结构脉冲激光器的实现方法,发明专利,201510745489
[11] 一种等离子体辅助反应磁控溅射制备DLC薄膜方法,发明专利,201410742990.6
[12] 一种不规则缺角型镜片镀膜前的装夹方法,发明专利,2013106911668
[13] 一种新型中高温太阳能光热选择性吸收涂层,发明专利,201210308290.7
[14] 一种光学基片的清洗方法,发明专利,201210387481.7
u 会议邀请报告
[1] 强光光学元件应力形变控制技术. 先进高功率高能激光技术与应用研讨会, 山东威海, 2017.12.8。
[2] 高质强光光学元件.特种光电功能材料与元器件应用研讨会, 精密光学薄膜制备与表征技术分会主席,辽宁大连, 2019.8.20。