Dual-comb spectroscopy in the deep ultraviolet

Author:

McCauley John J.ORCID,Phillips Mark C.ORCID,Weeks Reagan R. D.ORCID,Zhang Yu1ORCID,Harilal Sivanandan S.2ORCID,Jones R. Jason

Affiliation:

1. University of Arizona

2. Pacific Northwest National Laboratory

Abstract

This Letter reports dual-frequency-comb spectroscopy in the deep ultraviolet used to characterize transient laser-produced plasmas. Dual-comb spectroscopy at these wavelengths enables access to a large number of strong electronic transitions in neutral and ionized atoms and molecules. This broadband dual-frequency-comb system at 265 nm measures multiple transitions in neutral and singly ionized iron atoms in a laser-produced plasma. Analysis of absorption spectra yields time-resolved ion and neutral column densities, excitation temperatures, and electron densities, which are measured down to 1014cm−3 levels. The results provide insights into low-temperature plasma properties.

Funder

Air Force Office of Scientific Research

Defense Threat Reduction Agency

National Defense Science and Engineering Graduate

Publisher

Optica Publishing Group

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1. Evolution and persistence of SiO emission in nanosecond laser ablation plumes;Journal of Physics D: Applied Physics;2024-08-20

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