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Tri-comb spectroscopy

机译:三梳谱

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摘要

Multidimensional coherent spectroscopy (MDCS)(1,)(2) is a powerful method that enables the measurement of homogeneous linewidths in inhomogenously broadened systems, manybody interactions and coupling between excited resonances, all of which are not simultaneously accessible by any other method. Current implementations of MDCS require a bulky apparatus and suffer from resolution and acquisition speed limitations that constrain their applications outside the laboratory(3-5). Here, we propose and demonstrate an approach to nonlinear coherent spectroscopy that utilizes three slightly different repetition-rate frequency combs. Unlike traditional nonlinear methods, tri-comb spectroscopy uses only a single photodetector and no mechanical moving elements to enable faster acquisition times, while also providing comb resolution. As a proof of concept, a multidimensional coherent spectrum with comb cross-diagonal resolution is generated using only 365 ms of data. These improvements make MDCS relevant for systems with narrow resonances and it has the potential to be field deployable for chemical-sensing applications.
机译:多维相干光谱(MDCS)(1,)(2)是一种强大的方法,使得能够测量在均匀扩大的系统中的均匀线宽,许多人在激发共振之间的相互作用和耦合,所有这些方法都不同时访问任何其他方法。 MDC的当前实现需要庞大的装置并遭受解析和获取速度限制,其限制其在实验室外的应用(3-5)。在这里,我们提出并证明了一种利用三种略微不同的重复速率梳理的非线性相干光谱法的方法。与传统的非线性方法不同,三梳谱仅使用单个光电探测器,没有机械移动元件以实现更快的采集时间,同时还提供梳状分辨率。作为概念证据,使用仅365ms的数据产生具有梳状交叉对角分辨率的多维相干频谱。这些改进使MDC与具有窄共振的系统相关,并且它有可能成为可用于化学传感应用的现场。

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