4.7 Article

Synchronous nanoscale topographic and chemical mapping by differential-confocal controlled Raman microscopy

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PHOTONICS RESEARCH
卷 8, 期 9, 页码 1441-1447

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OPTICAL SOC AMER
DOI: 10.1364/PRJ.394537

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  1. Key Program of National Natural Science Foundation of China [51535002, 61635003]
  2. Engineering and Physical Sciences Research Council [EP/P001114/1]
  3. EPSRC [EP/P001114/1] Funding Source: UKRI

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Confocal Raman microscopy is currently used for label-free optical sensing and imaging within the biological, engineering, and physical sciences as well as in industry. However, currently these methods have limitations, including their low spatial resolution and poor focus stability, that restrict the breadth of new applications. This paper now introduces differential-confocal controlled Raman microscopy as a technique that fuses differential confocal microscopy and Raman spectroscopy, enabling the point-to-point collection of three-dimensional nanoscale topographic information with the simultaneous reconstruction of corresponding chemical information. The microscope collects the scattered Raman light together with the Rayleigh light, both as Rayleigh scattered and reflected light (these are normally filtered out in conventional confocal Raman systems). Inherent in the design of the instrument is a significant improvement in the axial focusing resolution of topographical features in the image (to similar to 1 nm), which, when coupled with super-resolution image restoration, gives a lateral resolution of 220 nm. By using differential confocal imaging for controlling the Raman imaging, the system presents a significant enhancement of the focusing and measurement accuracy, precision, and stability (with an antidrift capability), mitigating against both thermal and vibrational artefacts. We also demonstrate an improved scan speed, arising as a consequence of the nonaxial scanning mode. Published by Chinese Laser Press under the terms of the Creative Commons Attribution 4.0 License.

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