Tunable nanophotonics enabled by chalcogenide phase-change materials
硫族化合物相变材料使得可调谐纳米光子技术成为可能 作者:Sajjad Abdollahramezani, Omid Hemmatyar , Hossein Taghinejad , Alex Krasnok , Yashar Kiarashinejad , Mohammadreza Zandehshahvar , Andrea Alù and Ali Adibi https://doi.org/10.1515/nanoph-2020-0039
Ultra-compact integrated graphene plasmonic photodetector with bandwidth above 110 GHz
带宽超过110 GHz的超紧凑行型集成石墨烯等离子体光电探测器 作者:Yunhong Ding, Zhao Cheng , Xiaolong Zhu , Kresten Yvind , Jianji Dong , Michael Galili , Hao Hu , N. Asger Mortensen , Sanshui Xiao and Leif Katsuo Oxenløwe https://doi.org/10.1515/nanoph-2019-0167
Active topological photonics
活跃的拓扑光子学 作者:Yasutomo Ota, Kenta Takata , Tomoki Ozawa , Alberto Amo , Zhetao Jia , Boubacar Kante , Masaya Notomi , Yasuhiko Arakawa and Satoshi Iwamoto https://doi.org/10.1515/nanoph-2019-0376
Deep learning enabled inverse design in nanophotonics
深度学习使得纳米光子学中的逆设计成为可能 作者:Sunae So, Trevon Badloe , Jaebum Noh , Jorge Bravo-Abad and Junsuk Rho https://doi.org/10.1515/nanoph-2019-0474
Simulator-based training of generative neural networks for the inverse design of metasurfaces
基于模拟器的用于超表面逆设计的生成神经网络训练 作者:Jiaqi Jiang and Jonathan A. Fan https://doi.org/10.1515/nanoph-2019-0330
Tellurene-based saturable absorber to demonstrate large-energy dissipative soliton and noise-like pulse generations
展示大能量耗散孤子和类噪声脉冲产生的碲基饱和吸波器 作者:Nannan Xu , Pengfei Ma , Shenggui Fu , Xinxin Shang , Shouzhen Jiang , Shuyun Wang , Dengwang Li and Huanian Zhang https://doi.org/10.1515/nanoph-2019-0545
Palladium selenide as a broadband saturable absorber for ultra-fast photonics
作为超快光子学中宽带饱和吸收剂的硒化钯 作者:Huanian Zhang, Pengfei Ma , Mingxiao Zhu , Wenfei Zhang , Guomei Wang and Shenggui Fu https://doi.org/10.1515/nanoph-2020-0116
Hydrophobic multiscale cavities for high-performance and self-cleaning surface-enhanced Raman spectroscopy (SERS) sensing
用于高性能自清洁的表面增强拉曼光谱(SERS)传感的疏水多尺度腔体 作者:Xiaofei Zhao , Chundong Liu , Jing Yu , Zhen Li , Lu Liu , Chonghui Li , Shicai Xu , Weifeng Li , Baoyuan Man and Chao Zhang https://doi.org/10.1515/nanoph-2020-0454