Department of Physics, Ulsan National Institute of Science and Technology (UNIST), Ulsan, Republic of Korea.
Department of Energy Science, Sungkyunkwan University (SKKU), Suwon, Republic of Korea.
Nat Commun. 2021 Jun 8;12(1):3465. doi: 10.1038/s41467-021-23818-1.
Tip-enhanced nano-spectroscopy, such as tip-enhanced photoluminescence (TEPL) and tip-enhanced Raman spectroscopy (TERS), generally suffers from inconsistent signal enhancement and difficulty in polarization-resolved measurement. To address this problem, we present adaptive tip-enhanced nano-spectroscopy optimizing the nano-optical vector-field at the tip apex. Specifically, we demonstrate dynamic wavefront shaping of the excitation field to effectively couple light to the tip and adaptively control for enhanced sensitivity and polarization-controlled TEPL and TERS. Employing a sequence feedback algorithm, we achieve ~4.4 × 10-fold TEPL enhancement of a WSe monolayer which is >2× larger than the normal TEPL intensity without wavefront shaping. In addition, with dynamical near-field polarization control in TERS, we demonstrate the investigation of conformational heterogeneity of brilliant cresyl blue molecules and the controllable observation of IR-active modes due to a large gradient field effect. Adaptive tip-enhanced nano-spectroscopy thus provides for a systematic approach towards computational nanoscopy making optical nano-imaging more robust and widely deployable.
尖端增强纳米光谱学,如尖端增强光致发光(TEPL)和尖端增强拉曼光谱学(TERS),通常存在信号增强不一致和偏振分辨测量困难的问题。为了解决这个问题,我们提出了自适应尖端增强纳米光谱学,以优化尖端处的纳米光学矢量场。具体来说,我们演示了激发场的动态波前整形,以有效地将光耦合到尖端,并自适应地控制增强灵敏度和偏振控制的 TEPL 和 TERS。采用序列反馈算法,我们实现了单层 WSe 的 ~4.4 × 10 倍 TEPL 增强,比没有波前整形的正常 TEPL 强度大 >2 倍。此外,通过 TERS 中的动态近场偏振控制,我们演示了对亮甲酚蓝分子构象异质性的研究以及由于大梯度场效应而可控观察 IR 活性模式。自适应尖端增强纳米光谱学因此为计算纳成像提供了一种系统方法,使光学纳米成像更稳健且更广泛地应用。