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January 14, 2026High Power Laser Science and Engineering0 citationsOpen Access

Implementation of a spherical double-plasma-mirror telescope for a multi-petawatt laser

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VSValeriu ScutelnicMSMartin SpeicherAFA. Fazzini

Key Points

  • The study aims to enhance the capabilities of multi-petawatt laser beamlines through advanced telescope configurations.
  • Developed a double-plasma-mirror system with spherical optics for intensity adjustability.
  • Utilized an imaging system to assess focus quality and DPM reflectivity.
  • Conducted experiments to compare particle yield and proton kinetic energy between setups with and without DPMs.
  • Improved focal spot quality observed with the double-plasma-mirror configuration.
  • Higher particle yield and proton kinetic energy from nanometer-thick foils using the DPM system.
  • Demonstrated enhanced temporal contrast in the reflected laser beam.

Abstract

Abstract High-power laser beamlines typically operate with fixed focusing conditions, limiting the focal spot size and peak intensity. To mitigate these restrictions, prior studies used curved plasma mirrors to adjust the F-number to a specific value. Here, a double-plasma-mirror (DPM) system including spherical optics in a telescope configuration is implemented to adapt the F-number of a multi-petawatt (PW) laser beam resulting in adjustability within a range of intensities. The system is optimized to minimize focal aberrations. A dedicated imaging system is used to evaluate focus quality and the DPM reflectivity at the multi-PW level. Temporal contrast enhancement of the reflected beam is additionally demonstrated, as evidenced by higher particle yield and proton kinetic energy from nanometer-thick foils, compared to results without DPMs. These findings enable multi-PW laser facilities to explore more extreme laser–plasma conditions that require ultra-high temporal contrast and intensity, while expanding their capabilities in intensity adjustment beyond designed specifications.

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Cite This Study

Scutelnic et al. (2025) studied this question.

synapsesocial.com/papers/6966f33b13bf7a6f02c0124ehttps://doi.org/10.1017/hpl.2025.10076
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