Asynchronous and Interferometric Nonlinear Spectroscopy (AI-NS): Expanding Temporal and Spectral Horizons

Citations

WEB OF SCIENCE

3
Citations

SCOPUS

3

초록

Since the advent of time-resolved spectroscopy based on precision frequency technology of laser sources, it has been considered an alternative way to study dynamic processes in photochemical systems. This Perspective introduces asynchronous and interferometric nonlinear spectroscopy (AI-NS), a spectroscopic technique that combines asynchronously generated laser pulses and interferometric detection, offering an unprecedented temporal dynamic range with high spectral resolution and rapid data acquisition capabilities. By eliminating the need for mechanical delay stages, AI-NS facilitates the rapid collection of time-resolved data on dynamics ranging from femtoseconds to nanoseconds while simultaneously distinguishing frequency-dependent responses. Here, we detail the technical methodology of AI-NS and explore its applications to the studies of various systems, including semiconductors and biological systems. Additionally, we highlight prospective advancements, such as integration with multidimensional spectroscopy techniques. AI-NS not only expands the scope of spectroscopic analysis but also opens new avenues for the exploration of diverse materials and molecular systems.

키워드

Semiconductor Lasers; Dynamic Process; Interferometric Detection; Interferometrics; Laser Pulse Detection; Laser Sources; Nonlinear Spectroscopy; Photochemical Systems; Precision Frequency; Spectroscopic Technique; Time-resolved Spectroscopy; Review; Semiconductor; Spectroscopy; Time Resolved Spectroscopy; PUMP-PROBE SPECTROSCOPY; THIOFLAVIN-T; SUPERCONTINUUM GENERATION; FREQUENCY; LASER; DYNAMICS; YBKYW
제목
Asynchronous and Interferometric Nonlinear Spectroscopy (AI-NS): Expanding Temporal and Spectral Horizons
저자
Han, Gi Rim; Jang, Hyunmin; Yoon, Tai Hyun; Cho, Minhaeng
DOI
10.1021/acs.jpcb.4c08228
발행일
2025-02-07
유형
Review
저널명
The Journal of Physical Chemistry B
권
129
호
7
페이지
1891 ~ 1903