论文标题

通过光学分辨扫描探针提示增强尖端增强的纳米镜检查

Towards Augmenting Tip-Enhanced Nanoscopy with Optically Resolved Scanning Probe Tips

论文作者

Belhassen, Jeremy, Glass, Simha, Stanciu, George A., Tranca, Denis E., Zalevsky, Zeev, Stanciu, Stefan G., Karsenty, Avi

论文摘要

对生物物种和新兴纳米材料的透彻理解需要用能够纳米分辨率的光学技术进行深入的表征。在过去的几年中,基于尖端增强的光学效应的纳米镜检查已经获得了极大的兴趣,因为它们的潜力取决于尖锐的探针与聚焦光线相互作用的尖锐探针的大小,而与照明波长无关。尽管它们的受欢迎程度和应用数量正在上升,但尖端增强的纳米镜检查技术(十)仍主要依赖于不是专门针对此类应用而是用于原子力显微镜的探针。这在许多方面都笼罩着他们的潜力,例如就信噪比,可实现的图像质量或应用的程度而言。在本文中,我们将迈向下一代十的第一步,证明了具有已知光学特性的专门十个探针的制造和建模。所提出的框架具有很高的灵活性,并且可以轻松地调整以对各种类型的十种技术有益,因为具有已知光学特性的探针可能会通过不同的途径(例如直接信号增强或新型信号调制策略)更快,更准确地进行成像。我们认为,鉴于它提供的许多优势,报道的开发可以为大量新的十个成像协议和应用铺平道路。

A thorough understanding of biological species and of emerging nanomaterials requires, among others, their in-depth characterization with optical techniques capable of nano-resolution. Nanoscopy techniques based on tip-enhanced optical effects have gained over the past years tremendous interest given their potential to probe various optical properties with resolutions depending on the size of a sharp probe interacting with focused light, irrespective of the illumination wavelength. Although their popularity and number of applications is rising, tip-enhanced nanoscopy techniques (TEN) still largely rely on probes that are not specifically developed for such applications, but for Atomic Force Microscopy. This cages their potential in many regards, e.g. in terms of signal-to-noise ratio, attainable image quality, or extent of applications. In this article we place first steps towards next-gen TEN, demonstrating the fabrication and modelling of specialized TEN probes with known optical properties. The proposed framework is highly flexible and can be easily adjusted to be of o benefit to various types of TEN techniques, for which probes with known optical properties could potentially enable faster and more accurate imaging via different routes, such as direct signal enhancement or novel signal modulation strategies. We consider that the reported development can pave the way for a vast number of novel TEN imaging protocols and applications, given the many advantages that it offers.

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