Intense ultraviolet–visible–infrared full-spectrum laser

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Abstract

A high-brightness ultrabroadband supercontinuum white laser is desirable for various fields of modern science. Here, we present an intense ultraviolet-visible-infrared full-spectrum femtosecond laser source (with 300–5000 nm 25 dB bandwidth) with 0.54 mJ per pulse. The laser is obtained by sending a 3.9 μm, 3.3 mJ mid-infrared pump pulse into a cascaded architecture of gas-filled hollow-core fiber, a bare lithium niobate crystal plate, and a specially designed chirped periodically poled lithium niobate crystal, under the synergic action of second and third order nonlinearities such as high harmonic generation and self-phase modulation. This full-spectrum femtosecond laser source can provide a revolutionary tool for optical spectroscopy and find potential applications in physics, chemistry, biology, material science, industrial processing, and environment monitoring.

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Hong, L., Liu, L., Liu, Y., Qian, J., Feng, R., Li, W., … Li, Z. Y. (2023). Intense ultraviolet–visible–infrared full-spectrum laser. Light: Science and Applications, 12(1). https://doi.org/10.1038/s41377-023-01256-6

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