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线性、径向和环向偏振飞秒激光诱导非晶合金周期性表面结构(英文) 被引量:2

Linearly,Radially and Azimuthally Polarized Femtosecond Laser Induced Periodic Surface Structures on Amorphous Alloy
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摘要 研究在复杂偏振条件下,飞秒激光诱导非晶合金Zr_(44)Ti_(11)Cu_(10)Ni_(10)Be_(25)(at%)表面周期性结构的形成机理.实验采用波长800 nm、脉宽120 fs的超短脉冲激光,分别在线性、径向、环向偏振条件下,诱导非晶合金表面生成复杂的周期性表面结构.表面结构由周期为652~723 nm的低频条纹和周期为1 304~1 765 nm的微型条纹组成.通过有限差分时域法仿真分析,发现微型条纹由粗糙表面引起的定向调制的表面散射电磁波与入射激光干涉形成.仿真结果与实验结果一致,验证了微型条纹形成机理的有效性. The formation mechanism of Laser Induced Periodic Surface Structures(LIPSS) on the amorphous alloy Zr_(44)Ti_(11)Cu_(10)Ni_(10)Be_(25)(at%)was investigated.In experiment,LIPSS on the amorphous alloy were produced by ultrashort laser pulses of 120 fs duration at 800 nm wavelength in three types of laser polarizations(linear,radial and azimuthal polarization).These LIPSS are comprised of Low-SpatialFrequency LIPSS(LSFL) with the periodicity of 652~723 nm and macro-ripples with the periodicity of1 304~1765 nm.By Finite-Difference Time-Domain(FDTD) simulations,formation mechanism of macro-ripples can be explained by the interference between laser and modulated scattered electromagnetic wave induced by rough surface.In the condition of three types of laser polarizations(linear,radial and azimuthal polarization),FDTD simulation results agree with experimental results,proving the effectiveness of the macro-ripple formation mechanism.
作者 李晨 程光华
出处 《光子学报》 EI CAS CSCD 北大核心 2016年第8期75-80,共6页 Acta Photonica Sinica
基金 The National Natural Science Foundation of China(Nos.61378019,61223007)
关键词 超快光学 飞秒激光 非晶合金 有限差分时域法 空间光调制器 Laser induced periodic surface structures Ultrafast laser processing Amorphous metal Finite-Difference Time-Domain(FDTD) Spatial Light Modulator(SLM)
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  • 1张富红,张思泽,陈希颖,王吉华,黄俊,张庆,缪雪龙,夏少华,居钰生,杨永忠.喷油嘴偶件结构参数对国Ⅲ柴油机排放的影响[J].现代车用动力,2009(2):6-9. 被引量:3
  • 2何飞,程亚.飞秒激光微加工:激光精密加工领域的新前沿[J].中国激光,2007,34(5):595-622. 被引量:94
  • 3王礼力.应力波基础[M].北京:国防工业出版社,1985. 被引量:13
  • 4DACHRAOUI H, HUSINSKY W. Fast electronic and thermal processes in femtosecond laser ablation of Au[J]. Applied Physics Letters, 2006, 89(10): 104102. 1- 104102. 3. 被引量:1
  • 5CHEN Y, NAESSENS K, BAETSETAL R, et al. Ablation of transparent materials using excimer lasers for photonic applications[J]. OpticalReview, 2005, 12(6) : 427-441. 被引量:1
  • 6IORDACHESCU M, VALIENTE A, CABALLERO L, et al. Laser shock processing influence on local properties and overall tensile behavior of friction stir welded joints[J]. Surface and Coatings Technology, 2012, 206(8): 2422-2429. 被引量:1
  • 7GANESH P, SUNDAR R, KUMAR H, et al. Studies on fatigue life enhancement of pre-fatigued spring steel specimens using laser shock peening[J]. Materials & Design, 2014, 54: 734-741. 被引量:1
  • 8DACHRAOUI H, HUSINSKY W. Fast electronic and thermal processes in femtosecond laser ablation of Au[J]. Applied Physics Letters, 2006, 89(10): 104102.1-104102.3. 被引量:1
  • 9MUHAMMAD N, WHITEHEAD D, BOOR A. Comparison of dry and wet fibre laser profile cutting of thin 313L stainless steel tubes for medical device applications[J]. Journal of Materials Processing Technology, 2010, 210: 2261-2267. 被引量:1
  • 10SAGISAKA Y, KAMIYA M, MATSUDA M, et al. Thin-sheet-metal bending by laser peen forming with femtosecond laser[J]. Journal of Materials Processing Technology, 2010, 210(15): 2304-2309. 被引量:1

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