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1. 中国科学技术大学 精密机械与精密仪器系,安徽 合肥,230027
2. 安徽大学 电气工程与自动化学院,安徽 合肥,中国,230601
3. 安徽大学 计算智能与信号处理教育部重点实验室,安徽 合肥,230039
收稿日期:2013-02-27,
修回日期:2013-05-03,
网络出版日期:2013-08-20,
纸质出版日期:2013-08-15
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苏亚辉 汪金礼 杨亮 李家文 黄文浩. 飞秒激光全息并行加工中的多焦点均一性[J]. 光学精密工程, 2013,21(8): 1936-1941
SU Ya-hui WANG Jin-li YANG Liang LI Jia-wen HUANG Wen-hao . Uniformity of multi-foci for holographic femtosecond laser parallel fabrication[J]. Editorial Office of Optics and Precision Engineering, 2013,21(8): 1936-1941
苏亚辉 汪金礼 杨亮 李家文 黄文浩. 飞秒激光全息并行加工中的多焦点均一性[J]. 光学精密工程, 2013,21(8): 1936-1941 DOI: 10.3788/OPE.20132108.1936.
SU Ya-hui WANG Jin-li YANG Liang LI Jia-wen HUANG Wen-hao . Uniformity of multi-foci for holographic femtosecond laser parallel fabrication[J]. Editorial Office of Optics and Precision Engineering, 2013,21(8): 1936-1941 DOI: 10.3788/OPE.20132108.1936.
为了提高飞秒激光加工的效率和灵活性,设计了一套飞秒激光全息并行加工系统,并对该系统中加载计算全息图(CGH)生成的多焦点均一性和空间位置分布的关系进行了研究。首先,将空间光调制器(SLM)引入飞秒激光加工光路;然后,采用GS(Gerchberg-Saxton)算法设计了直线型和三角型分布的三焦点阵列。最后,通过数值仿真和实验研究比较了用两种不同空间分布的焦点列阵设计的全息图对均一性的影响。 结果表明,在焦点阵列间距较小的情况下,直线型分布设计的焦点阵列不易获得好的均一性,三焦点U仅有79%;而用三角型分布焦点阵列设计时,可以获得很好的均一性,三焦点U约等于100%。实验数据表明,三角形分布的三焦点可以实现高质量的并行加工,加工的半球状微结构阵列具有微透镜阵列的功能。
To improve the efficiency and flexibility of femtosecond laser fabrication
a holographic femtosecond laser parallel fabrication system was built. The relationship between the uniformity and the spatial distribution of multi-foci generated by Computer-generated Hologram (CGH) was studied. Firstly
a Spatial Light Modulator (SLM) was introduced into the femtosecond laser fabrication system. Then
Gerchberg-Saxton(GS) algorithm was used to design three foci arrays of straight-line distribution and triangular distribution. Finally
the effects of holograms designed by foci arrays of straight-line distribution and triangular distribution on the uniformity were compared by numerical simulation and experiments. The results show that the foci array of straight-line distribution is not easy to obtain higher uniformity
and its three-foci U is only by 79%; however
that of the triangular distribution tends to achieve higher uniformity and its three-foci U is about 100%. The experiment shows that the three foci of triangular distribution can implement a high quality parallel processing and obtained hemispheric microstructures have microlens array functions .
董贤子,陈卫强,赵震声,等. 飞秒脉冲激光双光子微纳加工技术及其应用[J].科学通报, 2008, 53(1):2-13.DONG X Z,CHEN W Q, ZHAO ZH SH,et al.. Femtosecond laser two-photon micro-/nano-fabrication and its applications [J]. Chinese Science Bulletin, 2008, 53(1):2-13. (in Chinese)[2]龚小竞,褚家如,杨建军,等.改进的飞秒激光加工微型光波导方法[J].光学 精密工程,2007, 15(1):27-32.GONG X J, CHU J R, YANG J J,et al.. An improved way for fabricating micro-waveguide by femtosecond laser [J]. Opt.Precision Eng., 2007, 15(1):27-32. (in Chinese)[3]ZHANG Y L, CHENG Q D, XIA H, et al.. Designable 3D nanofabrication by femtosecond laser direct writing [J]. Nanotoday, 2010, 5(5): 435-448. [4]蒋中伟,袁大军,祝安定,等. 双光子三维微细加工技术及实验系统的开发[J].光学 精密工程,2003,11(3):234-238.JIANG ZH W, YUAN D J, ZHU A D, et al.. 2-photon 3-D mircofabrication technology and its experimental system [J]. Opt. Precision Eng.,2003,11(3):234-238.(in Chinese)[5]TORMEN M, BUSINARO L, ALTISSIMO M, et al.. 3D patterning by means of nanoimprinting, X-ray and two-photon lithography [J]. Microelectronic Engineering, 2004, 73:535-541.[6]SHOJI S, KAWATA S. Photofabrication of three-dimensional photonic crystals by multibeam laser interference into a photopolymerizable resin [J]. Applied Physics Letters, 2000, 76(19): 2668-2670.[7]KATO J,TAKEYASU N,ADACHI Y,et al.. Multiple-spot parallel processing for laser micronanofabrication [J]. Applied Physics Letters, 2005, 86(4):044102-044104.[8]DONG X Z, ZHAO ZH SH, DUAN X M. Micronanofabrication of assembled three-dimensional microstructures by designable multiple beams multiphoton processing [J]. Applied Physics Letters, 2007, 91(12):124103-124105.[9]HAYASAKI Y, SUGIMOTO T, TAKITA A, et al.. Variable holographic femtosecond laser processing by use of a spatial light modulator [J]. Applied Physics Letters, 2005, 87(3): 031101-031103.[10]GITTARD S D, NGUYEN A, OBATA K,et al.. Fabrication of microscale medical devices by two-photon polymerization with multiple foci via a spatial light modulator [J]. Biomedical Optics Express,2011, 2(11):3167-3178.[11]LIN H, JIA B H, GU M. Dynamic generation of debye diffraction-limited multifocal arrays for direct laser printing nanofabrication [J]. Optics Letters,2011, 36(3):406-408.[12]KUANG Z, PERRIE W, LIU D, et al.. Ultra short pulse laser patterning of indium tin oxide thin films on glass by uniform diffractive beam patterns [J]. Applied Surface Science, 2012,258 (19):7601-7606.[13]GERCHBERG R W, SAXTON W O. A practical algorithm for the determination of phase from image and diffraction plane pictures [J]. Optik, 1972, 35:237-246.
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