High-peak-power long-wave infrared lasers with CO2 amplifiers

Mikhail N. Polyanskiy, Igor V. Pogorelsky, Marcus Babzien, Rotem Kupfer, Navid Vafaei-Najafabadi, Mark A. Palmer

Research output: Contribution to journalArticlepeer-review

30 Scopus citations

Abstract

Long-wave infrared (LWIR) picosecond pulses with multi-terawatt peak power have recently become available for advanced high-energy physics and material research. Multi-joule pulse energy is achieved in an LWIR laser system via amplification of a microjoule seed pulse with highpressure, mixed-isotope CO2 amplifiers. A chirped-pulse amplification (CPA) scheme is employed in such a laser to reduce the nonlinear interaction between the optical field and the transmissive elements of the system. Presently, a research and development effort is underway towards an even higher LWIR peak power that is required, for instance, for promising particle acceleration schemes. The required boost of the peak power can be achieved by reducing the pulse duration to fractions of a picosecond. For this purpose, the possibility of reducing the gain narrowing in the laser amplifiers and post-compression techniques are being studied. Another direction in research is aimed at the increased throughput (i.e., repetition rate), efficiency, and reliability of LWIR laser systems. The transition from a traditional electric-discharge pumping to an optical pumping scheme for CO2 amplifiers is expected to improve the robustness of high-peak-power LWIR lasers, making them suitable for broad implementation in scientific laboratory, industrial, and clinical environments.

Original languageEnglish
Article number101
JournalPhotonics
Volume8
Issue number4
DOIs
StatePublished - 1 Apr 2021
Externally publishedYes

Keywords

  • CO laser amplifier
  • High-peak-power laser
  • Long-wave infrared laser
  • Ultra-short pulses

ASJC Scopus subject areas

  • Atomic and Molecular Physics, and Optics
  • Instrumentation
  • Radiology Nuclear Medicine and imaging

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