封面
封底
Light: Science & Applications
第 13 卷 第 10 期
https://doi.org/10.1038/s41377-024-01488-0
「封底解读」极紫外光晶元量测: 用极紫外光成像晶元纳米结构:桌面型紧凑光源中的高次谐波产生极紫外光的过程。照片中展示了通过真空室顶的观察窗拍摄的高次谐波产生过程。红外驱动激光(从左向右传播)被聚焦到高压氩气气体流中(仅存在于垂直方向放置的气嘴之间)。明亮的白色等离子体产生波长在10-20纳米范围的极紫外光。粉紫色(相机记录的伪彩)的光晕和光线来自于被散射的红外光。
内 容 概 览
Breaking anisotropy limitations in thin-film lithium niobate arrayed waveguide gratings(突破薄膜铌酸锂阵列波导光栅的各向异性限制)
香港城市大学王騁
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https://doi.org/10.1038/s41377-024-01551-w
「相关论文信息」Wang, C. Breaking anisotropy limitations in thin-film lithium niobate arrayed waveguide gratings. Light Sci Appl 13, 209 (2024).
韩国浦项科技大学Junsuk Rho等
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https://doi.org/10.1038/s41377-024-01552-9
「相关论文信息」Heo, H., Rho, J. Waveguide-integrated metasurfaces for multi-channel crosstalk-free holography. Light Sci Appl 13, 210 (2024).
新加坡国立大学Wei Chen和Xiangyu Hou等
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https://doi.org/10.1038/s41377-024-01553-8
「相关论文信息」Cai, Y., Hou, X. & Chen, W. Enhancing vertically stacked skin display compactness via discrete layer preparation. Light Sci Appl 13, 211 (2024).
丹麦技术大学Haiyan Ou
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https://doi.org/10.1038/s41377-024-01515-0
「相关论文信息」Ou, H. Silicon carbide, the next-generation integrated platform for quantum technology. Light Sci Appl 13, 219 (2024).
南非金山大学Isaac Nape等
① 阅读论文原文▼点击下划线网址
https://doi.org/10.1038/s41377-024-01575-2
「相关论文信息」Nape, I., Forbes, A. Seeing invisible objects with intelligent optics. Light Sci Appl 13, 232 (2024).
新加坡科技设计大学Dawn T. H. Tan等
① 阅读论文原文▼点击下划线网址
https://doi.org/10.1038/s41377-024-01576-1
「相关论文信息」Tan, D.T.H., Chia, X.X. Ultra-low loss silicon nitride becomes even cooler. Light Sci Appl 13, 233 (2024).
美国洛斯·阿拉莫斯国家实验室陈侯通
① 阅读论文原文▼点击下划线网址
https://doi.org/10.1038/s41377-024-01579-y
「相关论文信息」Chen, HT. Micro-patterning of spintronic emitters enables ultrabroadband structured terahertz radiation. Light Sci Appl 13, 234 (2024).
Light People: Prof. Juejun Hu, exploring the light
中国科学院长春光机所孙婷婷
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https://doi.org/10.1038/s41377-024-01583-2
「相关论文信息」Sun, T. Light People: Prof. Juejun Hu, exploring the light. Light Sci Appl 13, 215 (2024).
Partial coherence boosts photonic computing(部分相干性增强光子计算)
北京航空航天大学戴飞和清华大学Hang Chen
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https://doi.org/10.1038/s41377-024-01571-6
「相关论文信息」Chen, H., Dai, F. Partial coherence boosts photonic computing. Light Sci Appl 13, 220 (2024).
综述
Strong light-matter coupling in van der Waals materials
清华大学熊启华等
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https://doi.org/10.1038/s41377-024-01523-0
「相关论文信息」Luo, Y., Zhao, J., Fieramosca, A. et al. Strong light-matter coupling in van der Waals materials. Light Sci Appl 13, 203 (2024).
华中科技大学韩宏伟和湖北大学郭枫晚等
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https://doi.org/10.1038/s41377-024-01461-x
「相关论文信息」Yang, C., Hu, W., Liu, J. et al. Achievements, challenges, and future prospects for industrialization of perovskite solar cells. Light Sci Appl 13, 227 (2024).
上海理工大学董毅博和中国科学院微电子研究所荀孟等
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https://doi.org/10.1038/s41377-024-01561-8
「相关论文信息」Pan, G., Xun, M., Zhou, X. et al. Harnessing the capabilities of VCSELs: unlocking the potential for advanced integrated photonic devices and systems. Light Sci Appl 13, 229 (2024).
美国加州大学洛杉矶分校Aydogan Ozcan等
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https://doi.org/10.1038/s41377-024-01544-9
「相关论文信息」Fanous, M.J., Casteleiro Costa, P., Işıl, Ç. et al. Neural network-based processing and reconstruction of compromised biophotonic image data. Light Sci Appl 13, 231 (2024).
High-rate intercity quantum key distribution with a semiconductor single-photon source
德国汉诺威大学丁飞等
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https://doi.org/10.1038/s41377-024-01488-0
「相关论文信息」Yang, J., Jiang, Z., Benthin, F. et al. High-rate intercity quantum key distribution with a semiconductor single-photon source. Light Sci Appl 13, 150 (2024).
北京量子信息科学研究院陆全勇和中国科学院半导体研究所王利军等
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https://doi.org/10.1038/s41377-024-01567-2
「相关论文信息」Li, R., Xu, Y., Zhang, S. et al. High brightness terahertz quantum cascade laser with near-diffraction-limited Gaussian beam. Light Sci Appl 13, 193 (2024).
Learning-based real-time imaging through dynamic scattering media
中国科学院上海光学精密机械研究所司徒国海等
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https://doi.org/10.1038/s41377-024-01569-0
「相关论文信息」Liu, H., Wang, F., Jin, Y. et al. Learning-based real-time imaging through dynamic scattering media. Light Sci Appl 13, 194 (2024).
Single 5-nm quantum dot detection via microtoroid optical resonator photothermal microscopy
美国亚利桑那大学Judith Su等
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https://doi.org/10.1038/s41377-024-01536-9
「相关论文信息」Hao, S., Suebka, S. & Su, J. Single 5-nm quantum dot detection via microtoroid optical resonator photothermal microscopy. Light Sci Appl 13, 195 (2024).
Wavelength-multiplexed multi-mode EUV reflection ptychography based on automatic differentiation
荷兰代尔夫特理工大学邵屹峰等
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「相关论文信息」Shao, Y., Weerdenburg, S., Seifert, J. et al. Wavelength-multiplexed multi-mode EUV reflection ptychography based on automatic differentiation. Light Sci Appl 13, 196 (2024).
Fluorescent, multifunctional anti-counterfeiting, fast response electrophoretic display based on TiO₂/CsPbBr₃ composite particles
中山大学杨柏儒等
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https://doi.org/10.1038/s41377-024-01526-x
「相关论文信息」Liu, G., Wu, X., Xiong, F. et al. Fluorescent, multifunctional anti-counterfeiting, fast response electrophoretic display based on TiO₂/CsPbBr₃ composite particles. Light Sci Appl 13, 198 (2024).
Low cross-talk optical addressing of trapped-ion qubits using a novel integrated photonic chip
牛津大学Christopher J. Ballance,Martin J. Booth,Bangshan Sun和Ana S. Sotirova等
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https://doi.org/10.1038/s41377-024-01542-x
「相关论文信息」Sotirova, A.S., Sun, B., Leppard, J.D. et al. Low cross-talk optical addressing of trapped-ion qubits using a novel integrated photonic chip. Light Sci Appl 13, 199 (2024).
Isolated attosecond pulse generation in a semi-infinite gas cell driven by time-gated phase matching
意大利米兰理工大学Rocío Borrego-Varillas ,Mauro Nisoli和西班牙萨拉曼卡大学 Carlos Hernández-García等
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https://doi.org/10.1038/s41377-024-01564-5
「相关论文信息」Vismarra, F., Fernández-Galán, M., Mocci, D. et al. Isolated attosecond pulse generation in a semi-infinite gas cell driven by time-gated phase matching. Light Sci Appl 13, 197 (2024).
Bio-inspired micropatterned thermochromic hydrogel for concurrent smart solar transmission and rapid visible-light stealth at all-working temperatures
香港中文大学Yi Long和哈尔滨工业大学王富强等
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https://doi.org/10.1038/s41377-024-01525-y
「相关论文信息」Liang, H., Zhang, X., Wang, F. et al. Bio-inspired micropatterned thermochromic hydrogel for concurrent smart solar transmission and rapid visible-light stealth at all-working temperatures. Light Sci Appl 13, 202 (2024).
Advancing on-chip Kerr optical parametric oscillation towards coherent applications covering the green gap
美国国家标准与技术研究院Kartik Srinivasan 和Xiyuan Lu等
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https://doi.org/10.1038/s41377-024-01534-x
「相关论文信息」Sun, Y., Stone, J., Lu, X. et al. Advancing on-chip Kerr optical parametric oscillation towards coherent applications covering the green gap. Light Sci Appl 13, 201 (2024).
Non-invasive estimation of the powder size distribution from a single speckle image
新加坡-麻省理工学院研究与技术联盟中心George Barbastathis等
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https://doi.org/10.1038/s41377-024-01563-6
「相关论文信息」Zhang, Q., Pandit, A., Liu, Z. et al. Non-invasive estimation of the powder size distribution from a single speckle image. Light Sci Appl 13, 200 (2024).
Giant Kerr nonlinearity of terahertz waves mediated by stimulated phonon polaritons in a microcavity chip
南开大学许京军,吴强和卢瑶等
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https://doi.org/10.1038/s41377-024-01509-y
「相关论文信息」Huang, Y., Lu, Y., Li, W. et al. Giant Kerr nonlinearity of terahertz waves mediated by stimulated phonon polaritons in a microcavity chip. Light Sci Appl 13, 212 (2024).
Giant ultrafast dichroism and birefringence with active nonlocal metasurfaces
意大利米兰理工大学Giuseppe Della Valle等
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https://doi.org/10.1038/s41377-024-01545-8
「相关论文信息」Crotti, G., Akturk, M., Schirato, A. et al. Giant ultrafast dichroism and birefringence with active nonlocal metasurfaces. Light Sci Appl 13, 204 (2024).
Thin film ferroelectric photonic-electronic memory
新加坡国立大学龚萧等
① 阅读本文详细解读▼点击下划线文字
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https://doi.org/10.1038/s41377-024-01555-6
「相关论文信息」Zhang, G., Chen, Y., Zheng, Z. et al. Thin film ferroelectric photonic-electronic memory. Light Sci Appl 13, 206 (2024).
Phase preservation of orbital angular momentum of light in multiple scattering environment
芬兰奥卢大学Alexander Bykov和英国阿斯顿大学Igor Meglinski等
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https://doi.org/10.1038/s41377-024-01562-7
「相关论文信息」Meglinski, I., Lopushenko, I., Sdobnov, A. et al. Phase preservation of orbital angular momentum of light in multiple scattering environment. Light Sci Appl 13, 214 (2024).
Ultra-broadband diffractive imaging with unknown probe spectrum
华中科技大学刘世元和谷洪刚等
① 阅读论文原文▼点击下划线网址
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https://doi.org/10.1038/s41377-024-01581-4
「相关论文信息」Chen, C., Gu, H. & Liu, S. Ultra-broadband diffractive imaging with unknown probe spectrum. Light Sci Appl 13, 213 (2024).
Delivery of luminescent particles to plants for information encoding and storage
华南农业大学雷炳富等
① 阅读论文原文▼点击下划线网址
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https://doi.org/10.1038/s41377-024-01518-x
「相关论文信息」Li, W., Lin, J., Huang, W. et al. Delivery of luminescent particles to plants for information encoding and storage. Light Sci Appl 13, 217 (2024).
Reconfigurable MIMO-based self-powered battery-less light communication system
沙特阿拉伯阿卜杜拉国王科技大学Jose Ilton De Oliveira Filho等
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https://doi.org/10.1038/s41377-024-01566-3
「相关论文信息」De Oliveira Filho, J.I., Trichili, A., Alkhazragi, O. et al. Reconfigurable MIMO-based self-powered battery-less light communication system. Light Sci Appl 13, 218 (2024).
Single-pulse ultrafast real-time simultaneous planar imaging of femtosecond laser-nanoparticle dynamics in flames(单脉冲超快实时同步平面成像研究火焰中飞秒激光-纳米粒子动力学)
美国加州理工学院汪立宏等
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https://doi.org/10.1038/s41377-024-01588-x
「相关论文信息」Mishra, Y.N., Wang, P., Bauer, F.J. et al. Single-pulse ultrafast real-time simultaneous planar imaging of femtosecond laser-nanoparticle dynamics in flames. Light Sci Appl 13, 221 (2024).
Hybrid Eu(II)-bromide scintillators with efficient 5d-4f bandgap transition for X-ray imaging
华南理工大学夏志国等
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https://doi.org/10.1038/s41377-024-01589-w
「相关论文信息」Han, K., Jin, J., Wang, Y. et al. Hybrid Eu(II)-bromide scintillators with efficient 5d-4f bandgap transition for X-ray imaging. Light Sci Appl 13, 222 (2024).
Multispectral smart window: Dynamic light modulation and electromagnetic microwave shielding
哈尔滨工业大学朱嘉琦,王天宇, 张智博和宋梓诚等
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https://doi.org/10.1038/s41377-024-01541-y
「相关论文信息」Zhang, R., Song, Z., Cao, W. et al. Multispectral smart window: Dynamic light modulation and electromagnetic microwave shielding. Light Sci Appl 13, 223 (2024).
Octave-spanning Kerr soliton frequency combs in dispersion- and dissipation-engineered lithium niobate microresonators
美国哈佛大学Marko Lončar,Kiyoul Yang和Yunxiang Song等
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https://doi.org/10.1038/s41377-024-01546-7
「相关论文信息」Song, Y., Hu, Y., Zhu, X. et al. Octave-spanning Kerr soliton frequency combs in dispersion- and dissipation-engineered lithium niobate microresonators. Light Sci Appl 13, 225 (2024).
Deep learning-based virtual staining, segmentation, and classification in label-free photoacoustic histology of human specimens
韩国浦项科技大学Chulhong Kim和韩国加图立大学Chan Kwon Jung等
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https://doi.org/10.1038/s41377-024-01554-7
「相关论文信息」Yoon, C., Park, E., Misra, S. et al. Deep learning-based virtual staining, segmentation, and classification in label-free photoacoustic histology of human specimens. Light Sci Appl 13, 226 (2024).
Long-range-interacting topological photonic lattices breaking channel-bandwidth limit
韩国首尔国立大学Sunkyu Yu和Namkyoo Park等
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https://doi.org/10.1038/s41377-024-01557-4
「相关论文信息」Kim, G., Suh, J., Lee, D. et al. Long-range-interacting topological photonic lattices breaking channel-bandwidth limit. Light Sci Appl 13, 189 (2024).
Multifaceted control of focal points along an arbitrary 3D curved trajectory
英国赫瑞瓦特大学陈献忠等
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https://doi.org/10.1038/s41377-024-01565-4
「相关论文信息」Ansari, M.A., Ahmed, H., Li, Y. et al. Multifaceted control of focal points along an arbitrary 3D curved trajectory. Light Sci Appl 13, 224 (2024).
Fiber-optic drug delivery strategy for synergistic cancer photothermal-chemotherapy
暨南大学关柏鸥和冉洋等
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https://doi.org/10.1038/s41377-024-01586-z
「相关论文信息」Zhang, Y., Zheng, J., Jin, F. et al. Fiber-optic drug delivery strategy for synergistic cancer photothermal-chemotherapy. Light Sci Appl 13, 228 (2024).
Telecom-band multiwavelength vertical emitting quantum well nanowire laser arrays
澳大利亚国立大学傅岚和西北工业大学甘雪涛等
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https://doi.org/10.1038/s41377-024-01570-7
「相关论文信息」Zhang, X., Zhang, F., Yi, R. et al. Telecom-band multiwavelength vertical emitting quantum well nanowire laser arrays. Light Sci Appl 13, 230 (2024).
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■ 意大利光学前沿专刊
https://www.nature.com/documents/Advances_in_Science_of_Light_7.23.pdf
■ 非线性超表面和超快纳米光子学前沿专刊
https://www.nature.com/documents/MetaFUN_Special_Issue__announcement__draft_6.25.pdf
■ 麻省理工学院 先进光学与光子学专刊
https://www.nature.com/documents/Special_Issue_on_Advanced_Optics_and_Photonics_at_MIT.pdf
■ 阿卜杜拉国王科技大学 光电子学专刊
稿件提交截止于2024-12-31
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