Chinese Journal of Lasers, Volume. 43, Issue 3, 303004(2016)
Research on Light Absorption Enhancement of Copper by Nanosecond Laser
[1] [1] Carey J E, Crouch C H, Shen M Y, et al.. Visible and near-infrared responsivity of femtosecond-laser microstructured silicon photodiodes [J]. Opt Lett, 2005, 30(14): 1773-1775.
[3] [3] Murthy N S, Prabhu R D, Martin J J, et al.. Self-assembled and etched cones on laser ablated polymer surfaces[J]. J Appl Phys, 2006, 100(2): 023538.
[4] [4] Dong X M, Song H Y, Liu S B. Femtosecond laser induced periodic large-scale surface structures on metals[J]. Chin Opt Lett, 2015, 13 (7): 071001.
[5] [5] Tang Yanfu, Nie Zhenwei. Study on periodic ripples on metallic surfaces induced by polarized lasers[J]. Chinese J Lasers, 2015, 42(7): 0702022.
[6] [6] Ursu I, Popa A, Prokhorov A M, et al.. Studies of the change of a metallic surface microrelief as a result of multiple-pulse action of powerful UV laser pulses[J]. J Appl Phys, 1985, 58(10): 3909-3913.
[7] [7] Wang J C, Guo C L. Formation of extraordinarily uniform periodic structures on metals induced by femtosecond laser pulses[J]. J Appl Phys, 2006, 100(2): 023511.
[8] [8] Meng F T, Hu J, Han W N, et al.. Morphology control of laser-induced periodic surface structure on the surface of nickel by femtosecond laser[J]. Chin Opt Lett, 2015, 13(6): 062201.
[9] [9] Kazakevich P V, Simakin A V, Shafeev G A. Formation of periodic structures by laser ablation of metals in liquids[J]. Appl Surf Sci, 2006, 252(13): 4457-4461.
[10] [10] Tang G, Abdolvand A. Laser-assisted highly organized structuring of copper[J]. Opt Mater Express, 2011, 1(8): 1425-1432.
[11] [11] Hwang T Y, Vorobyev A Y, Guo C L. Enhanced efficiency of solar-driven thermoelectric generator with femtosecond laser-textured metals [J]. Opt Express, 2011, 19(S4): A824-A829.
[12] [12] Yin Zhengmao. Improving Light Extraction Efficiency of GaN-Based LEDs by Oxide Micro&Nano Structures[D]. Jinan: Shandong University, 2014: 35-109.
[13] [13] Xue Jun, Yang Yong, Li Chen, et al.. Research on polarized scattering of self-organized nanogratings induced by femtosecond laser[J]. Acta Optica Sinica, 2014, 34(4): 0432001.
[14] [14] Vorobyev A Y, Guo C L. Enhanced absorptance of gold following multipulse femtosecond laser ablation[J]. Phys Rev B, 2005, 72(19): 195422.
[15] [15] Vorobyev A Y, Guo C L. Femtosecond laser blackening of platinum[J]. J Appl Phys, 2008, 104(5): 053516.
[16] [16] Vorobyev A Y, Guo C L. Effects of nanostructure-covered femtosecond laser-induced periodic surface structures on optical absorptance of metals[J]. Appl Phys A, 2007, 86(3): 321-324.
[17] [17] Paivasaari K, Kaakkunen J J J, Kuittinen M, et al.. Enhanced optical absorptance of metals using interferometric femtosecond ablation [J]. Opt Express, 2007, 15(21): 13838-13843.
[18] [18] Yang Y, Yang J J, Liang C Y, et al.. Ultra-broadband enhanced absorption of metal surfaces structured by femtosecond laser pulses[J]. Opt Express, 2008, 16(15): 11259-11265.
[19] [19] Tao H Y, Song X W, Hao Z Q, et al.. One-step formation of multifunctional nano- and microscale structures on metal surface by femtosecond laser[J]. Chin Opt Lett, 2015, 13(6): 061402.
[20] [20] Tao H Y, Lin J Q, Hao Z Q, et al.. Formation of strong light-trapping nano- and microscale structures on a spherical metal surface by femtosecond laser filament[J]. Appl Phys Lett, 2012, 100(20): 201111.
[23] [23] Sukmanowski J, Royer F X, N lting B, et al.. Light absorption enhancement by nanoparticles[J]. J Appl Phys, 2005, 97(10): 104332.
[24] [24] Vorobyev A Y, Guo C L. Colorizing metals with femtosecond laser pulses[J]. Appl Phys Lett, 2008, 92(4): 041914.
[25] [25] Vorobyev A Y, Topkov A N, Gurin O V, et al.. Enhanced absorption of metals over ultrabroad electromagnetic spectrum[J]. Appl Phys Lett, 2009, 95(12): 121106.
[26] [26] Vorobyev A Y, Guo C L. Antireflection effect of femtosecond laser-induced periodic surface structures on silicon[J]. Opt Express, 2011, 19(S5): A1032.
[27] [27] Tang G, Hourd A C, Abdolvand A. Nanosecond pulsed laser blackening of copper[J]. Appl Phys Lett, 2012, 101(23): 231902.
[28] [28] Crouch C H, Carey J E, Warrender J M, et al.. Comparison of structure and properties of femtosecond and nanosecond laser-structured silicon[J]. Appl Phys Lett, 2004, 84(11): 1850-1852.
[29] [29] Bensaoula A, Boney C, Pillai R, et al.. Arrays of 3D micro-columns generated by laser ablation of Ta and steel: Modelling of a black body emitter[J]. Appl Phys A, 2004, 79(4): 973-975.
[30] [30] Kaakkunen J J J, Paivasaari K, Kuittinen M, et al.. Morphology studies of the metal surfaces with enhanced absorption fabricated using interferometric femtosecond ablation [J]. Appl Phys A, 2009, 94(2): 215-220.
Get Citation
Copy Citation Text
Ren Naifei, Lin Kang, Zhang Zhiyan, Liang Hao, Gao Wenyan, Wang Yibo, Lin Xuechun. Research on Light Absorption Enhancement of Copper by Nanosecond Laser[J]. Chinese Journal of Lasers, 2016, 43(3): 303004
Category: laser manufacturing
Received: Jul. 6, 2015
Accepted: --
Published Online: Jan. 25, 2016
The Author Email: Naifei Ren (rnf@ujs.edu.cn)