Choi Kyu Ri, Li Shilong, Ozerov Igor, Bedu Frédéric, Park Dong Hee, Joo Bin Chan, Wu Jeong Weon, Nic Chormaic Síle, Lee Yeon Ui
Department of Physics, Chungbuk National University, Cheongju, Chungbuk 28644, South Korea.
Light-Matter Interactions for Quantum Technologies Unit, Okinawa Institute of Science and Technology Graduate University, Onna, Okinawa 904-0495, Japan.
Nanophotonics. 2023 Mar 31;12(13):2491-2498. doi: 10.1515/nanoph-2022-0751. eCollection 2023 Jun.
Single-molecule localization microscopies have gained much attention for their efficient realization of a sub-diffraction-limit imaging with the resolution down to the 10-nm range. In contrast to conventional localization microscopes, which rely on particular fluorescent probes in specific conditions, metamaterial-assisted super-resolution microscopies can be implemented with any fluorescent dye under general conditions. Here, we present a systematic study of fluorescence engineering in metamaterial assisted localization microscopy by using cyclic group metasurfaces coated with a fluorescent film. Tailored variations are clearly demonstrated in both the photoluminescence intensity and the photobleaching lifetime of fluorophores based on the spatially varied Purcell effect near the metasurfaces. The enhanced emissions and blinking dynamics of the fluorophores on these metasurfaces lead to an increased signal-to-noise ratio, and therefore give rise to a super-resolution localization image with 0.9-nm localization accuracy. Our results are not only beneficial for super-resolution localization imaging but also push the control of light-matter interactions beyond the diffraction limit.
单分子定位显微镜因其能高效实现分辨率低至10纳米范围的亚衍射极限成像而备受关注。与依赖特定条件下特定荧光探针的传统定位显微镜不同,超材料辅助的超分辨率显微镜可以在一般条件下使用任何荧光染料来实现。在此,我们通过使用涂有荧光膜的环状基团超表面,对超材料辅助定位显微镜中的荧光工程进行了系统研究。基于超表面附近空间变化的珀塞尔效应,荧光团的光致发光强度和光漂白寿命都呈现出明显的定制变化。这些超表面上荧光团的增强发射和闪烁动力学导致信噪比增加,从而产生定位精度为0.9纳米的超分辨率定位图像。我们的结果不仅有利于超分辨率定位成像,还推动了超越衍射极限的光与物质相互作用的控制。