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基于空间光调制器的超快激光加工原理及应用(下)
来源: | 作者:topphotonics | 发布时间: 2020-09-21 | 5647 次浏览 | 分享到:

[60]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.
[61]Zhang J, Gecevičius M, Beresna M ,et al. Seemingly Unlimited Lifetime Data Storage in Nanostructured Glass[J]. Physical Review Letters, 2014, 112(3): 033901.
[62]Silvennoinen M, Kaakkunen J, Paivasaari K ,et al. Parallel microstructuring using femtosecond laser and spatial light modulator[J]. Physics Procedia, Elsevier Srl, 2013, 41: 693–697.
[63]Li J, Tang Y, Kuang Z ,et al. Multi imaging-based beam shaping for ultrafast laser-material processing using spatial light modulators[J]. Optics and Lasers in Engineering, Elsevier Ltd, 2019, 112(August 2018): 59–67.
[64]Liu L, Yang D, Wan W ,et al. Fast fabrication of silver helical metamaterial with single-exposure femtosecond laser photoreduction[J]. Nanophotonics, 2019, 8(6): 1087–1093.[65]Hernandez O, Papagiakoumou E, Tanese D ,et al. Three-dimensional spatiotemporal focusing of holographic patterns[J]. Nature Communications, Nature Publishing Group, 2016, 7(May): 1–10.
[66]Sun B, Salter P S, Roider C ,et al. Four-dimensional light shaping: Manipulating ultrafast spatiotemporal foci in space and time[J]. Light: Science and Applications, Nature Publishing Group, 2018, 7(1): 17117.
[67]Saha S K, Wang D, Nguyen V H ,et al. Scalable submicrometer additive manufacturing[J]. Science, 2019, 366(6461): 105–109.
[68]Weiner A M, Heritage J P, Kirschner E M. High-resolution femtosecond pulse shaping[J]. Journal of the Optical Society of America B, 1988, 5(8): 1563.
[69]Ma J, Cheng W, Zhang S ,et al. Coherent quantum control of two-photon absorption and polymerization by shaped ultrashort laser pulses[J]. Laser Physics Letters, 2013, 10(8).
[70]Zheng Y, Yao Y, Deng L ,et al. Valence state manipulation of Sm^3+ ions via a phase-shaped femtosecond laser field[J]. Photonics Research, 2018, 6(2): 144.
[71]Zhao Y, Wang J. High-base vector beam encoding/decoding for visible-light communications[J]. Optics Letters, 2015, 40(21): 4843.
[72]Wang X-L, Ding J, Ni W-J ,et al. Generation of arbitrary vector beams with a spatial light modulator and a common path interferometric arrangement[J]. Optics Letters, 2007, 32(24): 3549.
[73]Rosales-Guzmán C, Bhebhe N, Forbes A. Simultaneous generation of multiple vector beams on a single SLM[J]. Optics Express, 2017, 25(21): 25697.
[74]Gan Z, Cao Y, Evans R a ,et al. Three-dimensional deep sub-diffraction optical beam lithography with 9 nm feature size[J]. Nature communications, Nature Publishing Group, 2013, 4(May): 2061.
[75]Li X, Cao Y, Tian N ,et al. Multifocal optical nanoscopy for big data recording at 30 TB capacity and gigabits/second data rate[J]. Optica, 2015, 2(6): 567.
[76]Lin H, Gu M. Creation of diffraction-limited non-Airy multifocal arrays using a spatially shifted vortex beam[J]. Applied Physics Letters, 2013, 102(8).
[77]Yang L, Qian D, Xin C ,et al. Direct laser writing of complex microtubes using femtosecond vortex beams[J]. Applied Physics Letters, 2017, 110(22).