Light focusing through a microbead leads to the formation of a photonic nanojet functional for enhancing the spatial resolution of traditional optical systems. Despite numerous works that prove this phenomenon, a method to appropriately translate the nanojet on top of a region of interest is still missing. Here, by using advanced 3D fabrication techniques we integrated a microbead on an AFM cantilever thus realizing a system to efficiently position nanojets. This fabrication approach is robust and can be exploited in a myriad of applications, ranging from microscopy to Raman spectroscopy. We demonstrate the potential of portable nanojets by imaging different sub-wavelength structures. Thanks to the achieved portability, we were able to perform a detailed optical characterization of the resolution enhancement induced by the microbead, which sheds light into the many contradictory resolution claims present in literature. Our conclusions are strongly supported by rigorous data analysis and by numerical simulations, all in perfect agreement with experimental results.

译文

:通过微珠的光聚焦导致形成用于增强传统光学系统的空间分辨率的光子纳米射流。尽管有大量的工作证明了这种现象,但是仍然缺少一种在目标区域顶部适当平移纳米射流的方法。在这里,通过使用先进的3D制造技术,我们将微珠集成在AFM悬臂上,从而实现了有效定位纳米喷嘴的系统。这种制造方法坚固耐用,可以在从显微镜到拉曼光谱的众多应用中加以利用。我们通过成像不同的亚波长结构展示了便携式纳米射流的潜力。由于实现了便携性,我们能够对微珠引起的分辨率增强进行详细的光学表征,这为文献中存在的许多相互矛盾的分辨率要求提供了线索。严格的数据分析和数值模拟为我们的结论提供了有力的支持,所有这些都与实验结果完全吻合。

+1
+2
100研值 100研值 ¥99课程
检索文献一次
下载文献一次

去下载>

成功解锁2个技能,为你点赞

《SCI写作十大必备语法》
解决你的SCI语法难题!

技能熟练度+1

视频课《玩转文献检索》
让你成为检索达人!

恭喜完成新手挑战

手机微信扫一扫,添加好友领取

免费领《Endnote文献管理工具+教程》

微信扫码, 免费领取

手机登录

获取验证码
登录