Laser-scanning optical-frequency-comb microscopy for multimodal imaging

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Kajiwara, Shimpei, Hase, Eiji, Nakano, Shota, Ootani, Keishiro, Okabe, Tomoya, Koresawa, Hidenori, Asahara, Akifumi, Yoshii, Kazumichi, Yamamoto, Hirotsugu, Minoshima, Kaoru, Yasui, Takeshi, Minamikawa, Takeo
Format: Preprint
Published: 2024
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866914814682464256
author Kajiwara, Shimpei
Hase, Eiji
Nakano, Shota
Ootani, Keishiro
Okabe, Tomoya
Koresawa, Hidenori
Asahara, Akifumi
Yoshii, Kazumichi
Yamamoto, Hirotsugu
Minoshima, Kaoru
Yasui, Takeshi
Minamikawa, Takeo
author_facet Kajiwara, Shimpei
Hase, Eiji
Nakano, Shota
Ootani, Keishiro
Okabe, Tomoya
Koresawa, Hidenori
Asahara, Akifumi
Yoshii, Kazumichi
Yamamoto, Hirotsugu
Minoshima, Kaoru
Yasui, Takeshi
Minamikawa, Takeo
contents We introduce a novel laser-scanning optical microscopy technique that employs optical-frequency-comb (OFC) lasers. This method facilitates multimodal spectroscopic imaging by analyzing interferograms produced via a dual-comb spectroscopic approach. Such interferograms capture comprehensive light information, including amplitude, phase, polarization, frequency, and time of flight information, enabling multimodal imaging from a single measurement. We demonstrate the potential of this technique across several spectroscopic imaging applications.
format Preprint
id arxiv_https___arxiv_org_abs_2405_17906
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Laser-scanning optical-frequency-comb microscopy for multimodal imaging
Kajiwara, Shimpei
Hase, Eiji
Nakano, Shota
Ootani, Keishiro
Okabe, Tomoya
Koresawa, Hidenori
Asahara, Akifumi
Yoshii, Kazumichi
Yamamoto, Hirotsugu
Minoshima, Kaoru
Yasui, Takeshi
Minamikawa, Takeo
Optics
We introduce a novel laser-scanning optical microscopy technique that employs optical-frequency-comb (OFC) lasers. This method facilitates multimodal spectroscopic imaging by analyzing interferograms produced via a dual-comb spectroscopic approach. Such interferograms capture comprehensive light information, including amplitude, phase, polarization, frequency, and time of flight information, enabling multimodal imaging from a single measurement. We demonstrate the potential of this technique across several spectroscopic imaging applications.
title Laser-scanning optical-frequency-comb microscopy for multimodal imaging
topic Optics
url https://arxiv.org/abs/2405.17906