论文标题

全自动双尖扫描近场光学显微镜,可在可见和近红外的局部光学激发和检测

A fully automated dual-tip scanning near-field optical microscope for localized optical excitation and detection in the visible and near-infrared

论文作者

Abbasirad, Najmeh, Berzins, Jonas, Kollin, Kenneth, Saravi, Sina, Janunts, Norik, Setzpfandt, Frank, Pertsch, Thomas

论文摘要

近场光学显微镜具有两个独立的同时激发和检测的尖端,这是研究次波长量表上局部光学现象的必要工具。在这里,我们报告了实现全自动且可靠的双尖端扫描近场光学显微镜(SNOM),其中激发尖端是固定的,而检测尖端会自动扫描周围的区域。为了监视和控制两个探针之间的距离,使用剪切力引起的机械相互作用。我们通过实验研究合适的扫描参数,发现自动双尖子SNOM可以在广泛的参数中稳定运行。为了证明自动双尖Snom的潜力,我们表征了表面等离子体极性子在金膜上的传播,以看见可见的和近红外波长。通过数值模拟测量的良好一致性验证了双尖SNOM对于局部光学现象的近场表征的能力。

Near-field optical microscopes with two independent tips for simultaneous excitation and detection can be essential tools for studying localized optical phenomena on the subwavelength scale. Here, we report on the implementation of a fully automated and robust dual-tip scanning near-field optical microscope (SNOM), in which the excitation tip is stationary, while the detection tip automatically scans the surrounding area. To monitor and control the distance between the two probes, mechanical interactions due to shear forces are used. We experimentally investigate suitable scan parameters and find that the automated dual-tip SNOM can operate stably for a wide range of parameters. To demonstrate the potential of the automated dual-tip SNOM, we characterize the propagation of surface plasmon polaritons on a gold film for visible and near-infrared wavelengths. The good agreement of the measurements with numerical simulations verifies the capability of the dual-tip SNOM for the near-field characterization of localized optical phenomena.

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