期刊名称:Optics
期刊主页:https://www.mdpi.com/journal/optics
本清单收录 MDPI Optics 期刊2024年编辑精选文章合集,主题主要涉及非线性光学,光学成像,光学器件设计与应用等。文中所展示的数据集均已提交至线上数据库平台,详情参考文中数据可用性声明。希望这些优秀的文章能为您的研究带来启发,欢迎阅读!
1. An Anti-Noise-Designed Residual Phase Unwrapping Neural Network for Digital Speckle Pattern Interferometry
用于数字散斑干涉测量的抗噪声残余相位解包裹神经网络
https://www.mdpi.com/2673-3269/5/1/3
MDPI 引用格式:Wang, B.; Cao, X.; Lan, M.; Wu, C.; Wang, Y. An Anti-Noise-Designed Residual Phase Unwrapping Neural Network for Digital Speckle Pattern Interferometry. Optics 2024, 5, 44-55. https://doi.org/10.3390/opt5010003.
2. Introducing Optical Nonlinearity in PDMS Using Organic Solvent Swelling
利用有机溶剂溶胀法在PDMS中引入光学非线性
https://www.mdpi.com/2673-3269/5/1/5
MDPI 引用格式:Bongu, S.R.; Buchmüller, M.; Neumaier, D.; Görrn, P. Introducing Optical Nonlinearity in PDMS Using Organic Solvent Swelling. Optics 2024, 5, 66-75. https://doi.org/10.3390/opt5010005.
3. Dual-Band Image Fusion Approach Using Regional Weight Analysis Combined with a Multi-Level Smoothing Filter
基于区域权重分析和多级平滑滤波器的双波段图像融合方法
https://www.mdpi.com/2673-3269/5/1/6
MDPI 引用格式:Yi, J.; Jiang, H.; Wang, X.; Tan, Y. Dual-Band Image Fusion Approach Using Regional Weight Analysis Combined with a Multi-Level Smoothing Filter. Optics 2024, 5, 76-87. https://doi.org/10.3390/opt5010006.
4. Electronic Population Reconstruction from Strong-Field-Modified Absorption Spectra with a Convolutional Neural Network
基于卷积神经网络的强场修饰吸收光谱电子布居重建
https://www.mdpi.com/2673-3269/5/1/7
MDPI 引用格式:Richter, D.; Magunia, A.; Rebholz, M.; Ott, C.; Pfeifer, T. Electronic Population Reconstruction from Strong-Field-Modified Absorption Spectra with a Convolutional Neural Network. Optics 2024, 5, 88-100. https://doi.org/10.3390/opt5010007.
5. Design of Planar Multilayer Devices for Optical Filtering Using Surrogate Model Based on Artificial Neural Network
基于人工神经网络代理模型的平面多层器件光学滤波设计
https://www.mdpi.com/2673-3269/5/1/9
MDPI 引用格式:Rêgo, D.F.; Silva, F.G.S.; Gusmão, R.C.; Rodriguez-Esquerre, V.F. Design of Planar Multilayer Devices for Optical Filtering Using Surrogate Model Based on Artificial Neural Network. Optics 2024, 5, 121-132. https://doi.org/10.3390/opt5010009.
6. Nanofabrication Process Scale-Up via Displacement Talbot Lithography of a Plasmonic Metasurface for Sensing Applications
通过位移塔尔博特光刻技术放大等离子体超表面纳米加工工艺,用于传感应用
https://www.mdpi.com/2673-3269/5/1/12
MDPI 引用格式:Pellacani, P.; Jefimovs, K.; Angelini, M.; Marabelli, F.; Tolardo, V.; Kazazis, D.; Floris, F. Nanofabrication Process Scale-Up via Displacement Talbot Lithography of a Plasmonic Metasurface for Sensing Applications. Optics 2024, 5, 165-175. https://doi.org/10.3390/opt5010012.
7. Angle-Resolved Optical Characterization of a Plasmonic Triangular Array of Elliptical Holes in a Gold Layer
金层中椭圆孔等离子体三角阵列的角度分辨光学表征
https://www.mdpi.com/2673-3269/5/1/14
MDPI 引用格式:Angelini, M.; Jefimovs, K.; Pellacani, P.; Kazazis, D.; Marabelli, F.; Floris, F. Angle-Resolved Optical Characterization of a Plasmonic Triangular Array of Elliptical Holes in a Gold Layer. Optics 2024, 5, 195-206. https://doi.org/10.3390/opt5010014.
8. Multipolar Analysis in Symmetrical Meta-Atoms Sustaining Fano Resonances
支持法诺共振的对称超原子中的多极分析
https://www.mdpi.com/2673-3269/5/2/17
MDPI 引用格式:Bonino, V.; Angelini, A. Multipolar Analysis in Symmetrical Meta-Atoms Sustaining Fano Resonances. Optics 2024, 5, 238-247. https://doi.org/10.3390/opt5020017.
9. A Review of Non-Linear Optical Imaging Techniques for Cancer Detection
癌症检测非线性光学成像技术综述
https://www.mdpi.com/2673-3269/5/4/31
MDPI 引用格式:Ávila, F.J. A Review of Non-Linear Optical Imaging Techniques for Cancer Detection. Optics 2024, 5, 416-433. https://doi.org/10.3390/opt5040031.
10. Investigating Quantum Confinement and Enhanced Luminescence in Nanoporous Silicon: A Photoelectrochemical Etching Approach Using Multispectral Laser Irradiation
利用多光谱激光辐照的光电化学刻蚀方法研究纳米多孔硅中的量子限制和增强发光
https://www.mdpi.com/2673-3269/5/4/35
MDPI 引用格式:Chiang, C.-C.; Immanuel, P.N. Investigating Quantum Confinement and Enhanced Luminescence in Nanoporous Silicon: A Photoelectrochemical Etching Approach Using Multispectral Laser Irradiation. Optics 2024, 5, 465-476. https://doi.org/10.3390/opt5040035.
期刊介绍
主编:Prof. Dr. Costantino De Angelis, University of Brescia, Italy;
Prof. Dr. Thomas Seeger, Universität Siegen, Germany
期刊介绍:Optics 创刊于2020年,旨在为光学领域的高影响力基础研究和应用研究提供一个开放的交流平台。期刊主要发表综述型、研究型论文和简短通讯,主题涵盖生物医学光学、激光光学、纳米光子学与超材料、非线性光学、光通信、光学成像、光学性质、光子学、量子光学、传感器与传感、光伏发电、光学分析方法等。目前已被ESCI (Web of Science)、Scopus、CNKI等数据库收录。
|
2024 CiteScore
|
2.6
|
|
Time to First Decision
|
23 Days
|
|
Acceptance to Publication
|
4.8 Days
|
|
2024 Impact Factor
|
1.6
|
特别声明:本文转载仅仅是出于传播信息的需要,并不意味着代表本网站观点或证实其内容的真实性;如其他媒体、网站或个人从本网站转载使用,须保留本网站注明的“来源”,并自负版权等法律责任;作者如果不希望被转载或者联系转载稿费等事宜,请与我们接洽。