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Light: Science & Applications
第 13 卷 第 9 期
https://doi.org/10.1038/s41377-024-01475-5
https://doi.org/10.1038/s41377-024-01568-1
内 容 概 览
Fast, faster, and the fastest structured illumination microscopy(快速、更快和超快的结构光照明显微技术)
西安交通大学雷铭等
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https://doi.org/10.1038/s41377-024-01505-2
「相关论文信息」Zhao, T., Lei, M. Fast, faster, and the fastest structured illumination microscopy. Light Sci Appl 13, 186 (2024).
美国中佛罗里达大学吴诗聪和上海交通大学李燕
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https://doi.org/10.1038/s41377-024-01538-7
「相关论文信息」Li, Y., Wu, ST. Advancing from scalar to vectorial liquid crystal holography: a paradigm shift. Light Sci Appl 13, 207 (2024).
清华大学杨忠强等
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https://doi.org/10.1038/s41377-024-01549-4
「相关论文信息」Ma, J., Yang, Z. Chiral liquid crystal elastomers advance light modulation. Light Sci Appl 13, 205 (2024).
南非金山大学Andrew Forbes等
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https://doi.org/10.1038/s41377-024-01550-x
「相关论文信息」Nothlawala, F., Forbes, A. Large quantum alphabets with a tiny footprint. Light Sci Appl 13, 208 (2024).
Light People: Prof. Donal D C Bradley (FRS)(Light人物 | Donal D C Bradley教授(英国皇家学会会士)
南京邮电大学夏瑞东等
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https://doi.org/10.1038/s41377-024-01527-w
「相关论文信息」Xia, R., Hu, Y. Light People: Prof. Donal D C Bradley (FRS). Light Sci Appl 13, 183 (2024).
Radiationless optical modes in metasurfaces: recent progress and applications
北京理工大学黄玲玲等
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https://doi.org/10.1038/s41377-024-01548-5
「相关论文信息」Muhammad, N., Su, Z., Jiang, Q. et al. Radiationless optical modes in metasurfaces: recent progress and applications. Light Sci Appl 13, 192 (2024).
Visualization of cristae and mtDNA interactions via STED nanoscopy using a low saturation power probe
北京大学席鹏、单春燕和河北大学高保祥等
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革新超分辨显微技术:HBmito Crimson探针揭示线粒体嵴与DNA的神秘互动
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https://doi.org/10.1038/s41377-024-01463-9
「相关论文信息」Ren, W., Ge, X., Li, M. et al. Visualization of cristae and mtDNA interactions via STED nanoscopy using a low saturation power probe. Light Sci Appl 13, 116 (2024).
电子科技大学王子南,巴西伯南布哥联邦大学 Anderson S. L. Gomes和Ernesto P. Raposo等
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https://doi.org/10.1038/s41377-024-01475-5
「相关论文信息」Qi, Y., Ni, L., Ye, Z. et al. Replica symmetry breaking in 1D Rayleigh scattering system: theory and validations. Light Sci Appl 13, 151 (2024).
Ptycho-endoscopy on a lensless ultrathin fiber bundle tip
美国康涅狄格大学郑国安和Pengming Song等
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https://doi.org/10.1038/s41377-024-01510-5
「相关论文信息」Song, P., Wang, R., Loetgering, L. et al. Ptycho-endoscopy on a lensless ultrathin fiber bundle tip. Light Sci Appl 13, 168 (2024).
Tunable single emitter-cavity coupling strength through waveguide-assisted energy quantum transfer
清华大学孙洪波和林琳涵等
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https://doi.org/10.1038/s41377-024-01508-z
「相关论文信息」Liu, Y., Zhou, H., Lin, L. et al. Tunable single emitter-cavity coupling strength through waveguide-assisted energy quantum transfer. Light Sci Appl 13, 171 (2024).
Arbitrarily rotating polarization direction and manipulating phases in linear and nonlinear ways using programmable metasurface
东南大学崔铁军,程强,戴俊彦和瑞典查尔姆斯理工大学Qiao Chen等
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「相关论文信息」Liu, W., Wang, S.R., Dai, J.Y. et al. Arbitrarily rotating polarization direction and manipulating phases in linear and nonlinear ways using programmable metasurface. Light Sci Appl 13, 172 (2024).
A memristive-photoconductive transduction methodology for accurately nondestructive memory readout
南京工业大学刘举庆等
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https://doi.org/10.1038/s41377-024-01519-w
「相关论文信息」Zhou, Z., Wu, Y., Pan, K. et al. A memristive-photoconductive transduction methodology for accurately nondestructive memory readout. Light Sci Appl 13, 175 (2024).
Bottom-up construction of low-dimensional perovskite thick films for high-performance X-ray detection and imaging
吉林大学沈亮,中国工程物理研究院化工材料研究所郑霄家等
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https://doi.org/10.1038/s41377-024-01521-2
「相关论文信息」Dong, S., Fan, Z., Wei, W. et al. Bottom-up construction of low-dimensional perovskite thick films for high-performance X-ray detection and imaging. Light Sci Appl 13, 174 (2024).
Broadband nonreciprocal thermal emissivity and absorptivity
美国加州理工学院Harry A. Atwater和美国加州大学洛杉矶分校 Aaswath P. Raman等
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https://doi.org/10.1038/s41377-024-01520-3
「相关论文信息」Shayegan, K.J., Hwang, J.S., Zhao, B. et al. Broadband nonreciprocal thermal emissivity and absorptivity. Light Sci Appl 13, 176 (2024).
Vertically stacked skin-like active-matrix display with ultrahigh aperture ratio
东北师范大学汤庆鑫,董永军和赵晓丽等
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https://doi.org/10.1038/s41377-024-01524-z
「相关论文信息」Li, J., Ni, Y., Zhao, X. et al. Vertically stacked skin-like active-matrix display with ultrahigh aperture ratio. Light Sci Appl 13, 177 (2024).
Pyramid diffractive optical networks for unidirectional image magnification and demagnification
美国加州大学洛杉矶分校Aydogan Ozcan等
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https://doi.org/10.1038/s41377-024-01543-w
「相关论文信息」Bai, B., Yang, X., Gan, T. et al. Pyramid diffractive optical networks for unidirectional image magnification and demagnification. Light Sci Appl 13, 178 (2024).
Towards mixed physical node reservoir computing: light-emitting synaptic reservoir system with dual photoelectric output
福州大学陈惠鹏等
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https://doi.org/10.1038/s41377-024-01516-z
「相关论文信息」Lian, M., Gao, C., Lin, Z. et al. Towards mixed physical node reservoir computing: light-emitting synaptic reservoir system with dual photoelectric output. Light Sci Appl 13, 179 (2024).
Upconversion-based chiral nanoprobe for highly selective dual-mode sensing and bioimaging of hydrogen sulfide in vitro and in vivo
吉林大学卢革宇,刘晓敏和闫旭等
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https://doi.org/10.1038/s41377-024-01539-6
「相关论文信息」Lu, Y., Zhao, X., Yan, D. et al. Upconversion-based chiral nanoprobe for highly selective dual-mode sensing and bioimaging of hydrogen sulfide in vitro and in vivo. Light Sci Appl 13, 180 (2024).
Anisotropic phonon dynamics in Dirac semimetal PtTe₂ thin films enabled by helicity-dependent ultrafast light excitation
南京大学王学锋和复旦大学张宗芝等
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https://doi.org/10.1038/s41377-024-01540-z
「相关论文信息」Li, Z., Chen, Y., Song, A. et al. Anisotropic phonon dynamics in Dirac semimetal PtTe₂ thin films enabled by helicity-dependent ultrafast light excitation. Light Sci Appl 13, 181 (2024).
Metalenses phase characterization by multi-distance phase retrieval
香港城市大学陈沐谷,清华大学耿子涵和复旦大学赵茂雄等
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https://doi.org/10.1038/s41377-024-01530-1
「相关论文信息」Liu, B., Cheng, J., Zhao, M. et al. Metalenses phase characterization by multi-distance phase retrieval. Light Sci Appl 13, 182 (2024).
Meta Shack–Hartmann wavefront sensor with large sampling density and large angular field of view: phase imaging of complex objects
韩国科学技术院Mooseok Jang等
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具有大采样密度和大角度视场的Meta Shack-Hartmann波前传感器:复杂物体的相位成像
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https://doi.org/10.1038/s41377-024-01528-9
「相关论文信息」Go, GH., Lee, Dg., Oh, J. et al. Meta Shack–Hartmann wavefront sensor with large sampling density and large angular field of view: phase imaging of complex objects. Light Sci Appl 13, 187 (2024).
Breaking the in-coupling efficiency limit in waveguide-based AR displays with polarization volume gratings
美国中佛罗里达大学吴诗聪和东南大学张宇宁等
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https://doi.org/10.1038/s41377-024-01537-8
「相关论文信息」Ding, Y., Gu, Y., Yang, Q. et al. Breaking the in-coupling efficiency limit in waveguide-based AR displays with polarization volume gratings. Light Sci Appl 13, 185 (2024).
Learnable digital signal processing: a new benchmark of linearity compensation for optical fiber communications
上海交通大学义理林等
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https://doi.org/10.1038/s41377-024-01556-5
「相关论文信息」Niu, Z., Yang, H., Li, L. et al. Learnable digital signal processing: a new benchmark of linearity compensation for optical fiber communications. Light Sci Appl 13, 188 (2024).
Exciton-harvesting enabled efficient charged particle detection in zero-dimensional halides
中国科学院上海硅酸盐研究所吴云涛,西北核技术研究院欧阳晓平和中国科学院高能物理研究所孙希磊等
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https://doi.org/10.1038/s41377-024-01532-z
「相关论文信息」Wang, Q., Wang, C., Shi, H. et al. Exciton-harvesting enabled efficient charged particle detection in zero-dimensional halides. Light Sci Appl 13, 190 (2024).
Organic polaritonic light-emitting diodes with high luminance and color purity toward laser displays
首都师范大学廖清和付红兵等
① 阅读论文原文▼点击下划线网址
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https://doi.org/10.1038/s41377-024-01531-0
「相关论文信息」De, J., Zhao, R., Yin, F. et al. Organic polaritonic light-emitting diodes with high luminance and color purity toward laser displays. Light Sci Appl 13, 191 (2024).
Lens-free on-chip 3D microscopy based on wavelength-scanning Fourier ptychographic diffraction tomography
南京理工大学左超和江苏省光谱成像与智能感知重点实验室陈钱等
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https://doi.org/10.1038/s41377-024-01568-1
「相关论文信息」Wu, X., Zhou, N., Chen, Y. et al. Lens-free on-chip 3D microscopy based on wavelength-scanning Fourier ptychographic diffraction tomography. Light Sci Appl 13, 237 (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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