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Motion-copying method with symbol sequence-based phase switch control for intelligent optical manufacturing
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¡¸Ïà¹ØÂÛÎÄÐÅÏ¢¡¹Yutang Wang, Dapeng Tian, Haixiang Hu, Yan Li, Shiquan Ni. Motion-copying method with symbol sequence-based phase switch control for intelligent optical manufacturing[J]. Light: Advanced Manufacturing 5, 12(2024). doi: 10.37188/lam.2024.012
All-silicon low-loss THz temporal differentiator based on microring waveguide resonator platform£¨Ì«ºÕ×È΢·ÖÆ÷£ºÒ»ÖÖµÍÏûºÄµÄƬÉÏÌ«ºÕ×ÈÐźŴ¦Öóͷ£Ä£¿£¿£¿£¿£¿£¿£¿£¿é£©
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¡¸Ïà¹ØÂÛÎÄÐÅÏ¢¡¹Yunjie Rui, Shuyu Zhou, Xuecou Tu, Xu Yan, Bingnan Yan, Chen Zhang, Ziyao Ye, Huilin Zhang, Jingya Xie, Qing-Yuan Zhao, La-Bao Zhang, Xiao-Qing Jia, Huabing Wang, Lin Kang, Jian Chen, Peiheng Wu. All-silicon low-loss THz temporal differentiator based on microring waveguide resonator platform[J]. Light: Advanced Manufacturing 5, 17(2024). doi: 10.37188/lam.2024.017
Differential mode-gain equalization via femtosecond laser micromachining-induced refractive index tailoring
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¡¸Ïà¹ØÂÛÎÄÐÅÏ¢¡¹Cong Zhang, Senyu Zhang, Yan Zeng, Yue Wang, Meng Xiang, Di Lin, Songnian Fu, Yuwen Qin. Differential mode-gain equalization via femtosecond laser micromachining-induced refractive index tailoring[J]. Light: Advanced Manufacturing 5, 14(2024). doi: 10.37188/lam.2024.014
Breaking the speed limitation of wavemeter through spectra-space-time mapping
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¡¸Ïà¹ØÂÛÎÄÐÅÏ¢¡¹Zheng Gao, Ting Jiang, Mingming Zhang, Yuxuan Xiong, Hao Wu, Ming Tang. Breaking the speed limitation of wavemeter through spectra-space-time mapping[J]. Light: Advanced Manufacturing 4, 13(2024). doi: 10.37188/lam.2024.013
Accuracy verification methodology for computer-generated hologram used for testing a 3.5-meter mirror based on an equivalent element
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¡¸Ïà¹ØÂÛÎÄÐÅÏ¢¡¹Kai Xu, Haixiang Hu, Xin Zhang, Hongda Wei, Zhiyu Zhang, Xuejun Zhang. Accuracy verification methodology for computer-generated hologram used for testing a 3.5-meter mirror based on an equivalent element[J]. Light: Advanced Manufacturing 5, 25(2024). doi: 10.37188/lam.2024.025
3D micro-devices for enhancing the lateral resolution in optical microscopy
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¡¸Ïà¹ØÂÛÎÄÐÅÏ¢¡¹Gordon Zyla, G?ran Maconi, Anton Nolvi, Jan Marx, Dimitra Ladika, Ari Salmi, Vasileia Melissinaki, Ivan Kassamakov, Maria Farsari. 3D micro-devices for enhancing the lateral resolution in optical microscopy[J]. Light: Advanced Manufacturing 5, 19(2024). doi£º10.37188/lam.2024.019
Single-shot 3D incoherent imaging with diffuser endoscopy
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¡¸Ïà¹ØÂÛÎÄÐÅÏ¢¡¹Julian Lich, Tom Glosemeyer, J¨¹rgen Czarske, Robert Kuschmierz. Single-shot 3D incoherent imaging with diffuser endoscopy[J]. Light: Advanced Manufacturing 5, 15(2024). doi: 10.37188/lam.2024.015
Laser speckle grayscale lithography: a new tool for fabricating highly sensitive flexible capacitive pressure sensors
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¡¸Ïà¹ØÂÛÎÄÐÅÏ¢¡¹Yong Zhou, Kun Wang, Junkun Mao, Yifei Ma, Mei Wang, Suotang Jia, Xuyuan Chen, Zhaomin Tong. Laser speckle grayscale lithography: a new tool for fabricating highly sensitive flexible capacitive pressure sensors[J]. Light: Advanced Manufacturing 5, 16(2024). doi: 10.37188/lam.2024.016
Ultrafast laser-induced decomposition for selective activation of GaAs
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¡¸Ïà¹ØÂÛÎÄÐÅÏ¢¡¹Ke-Mi Xu, Chao Liu, Lei Wang, Feng-Chun Pang, Xin-Jing Zhao, Xian-Bin Li, Qi-Dai Chen, Wei-Qian Zhao. Ultrafast laser-induced decomposition for selective activation of GaAs[J]. Light: Advanced Manufacturing 5, 26(2024). doi: 10.37188/lam.2024.026
Functional plastic films: nano-engineered composite based flexible microwave antennas with near-unity relative visible transmittance
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¡¸Ïà¹ØÂÛÎÄÐÅÏ¢¡¹Cheng Zhang, Liang Zhu, Chengang Ji, Zhilu Ye, Nabeel Alsaab, Minye Yang, Yuhui Hu, Pai-Yen Chen, L. Jay Guo. Functional plastic films: nano-engineered composite based flexible microwave antennas with near-unity relative visible transmittance[J]. Light: Advanced Manufacturing 5, 36(2024). doi: 10.37188/lam.2024.036
Parallel fabrication of silica optical microfibers and nanofibers
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¡¸Ïà¹ØÂÛÎÄÐÅÏ¢¡¹Hubiao Fang, Yu Xie, Zipei Yuan, Dawei Cai, Jianbin Zhang, Xin Guo, Limin Tong. Parallel fabrication of silica optical microfibers and nanofibers [J]. Light: Advanced Manufacturing5, 20(2024). doi: 10.37188/lam.2024.020
A shoe-box-sized 3D laser nanoprinter based on two-step absorption£¨Ë«²½ÎüÊÕÊÖÒÕµÄÏ£ÍûʵÏÖÁËЬºÐ¾ÞϸµÄÈýά¼¤¹âÄÉÃ×´òÓ¡»ú£©
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¡¸Ïà¹ØÂÛÎÄÐÅÏ¢¡¹Tobias Messer, Michael Hippe, Jingya (Lilyn) Gao, Martin Wegener. A shoe-box-sized 3D laser nanoprinter based on two-step absorption[J]. Light: Advanced Manufacturing 5, 27(2024). doi: 10.37188/lam.2024.027
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