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March 21, 2026High Power Laser Science and Engineering4 citationsOpen Access

Over 400 W average power, sub-two-cycle, carrier-envelope phase-stable fiber laser system

ISImre SeresESEvgeny ShestaevMTMaxim Tschernajew

Key Points

  • The aim is to develop a high-power fiber laser system that maintains carrier-envelope phase stability and produces ultra-short pulse durations.
  • Developed a 1030 nm fiber-based laser system
  • Utilized a multi-pass cell compression technique
  • Employed active stabilization for carrier-envelope phase noise
  • Evaluated beam quality properties in high-intensity conditions
  • Achieved 402 W average power at 100 kHz repetition rate
  • Produced 6.2 fs pulse durations
  • Maintained carrier-envelope phase noise below 430 mrad RMS
  • Demonstrated exceptional average power and pulse stability for the first time in this configuration

Abstract

Abstract We report on the development of a carrier-envelope phase (CEP)-stable 1030 nm fiber-based laser system producing 6.2 fs pulses achieved via the multi-pass cell (MPC) post-compression technique with 402 W average power at 100 kHz repetition rate. This system employs an upgraded three-stage MPC compression scheme exhibiting excellent beam quality properties for this intensity region. Active stabilization locks the CEP noise below 430 mrad root mean square. This work represents the first demonstration of a coherently combined fiber laser system simultaneously achieving such exceptional average power, CEP stability and sub-two-cycle pulse durations. Similar to all other light sources of the Extreme Light Infrastructure Attosecond Light Pulse Source, this newly developed system is accessible to the international research community in peer-reviewed open user calls of the Extreme Light Infrastructure European Research Infrastructure Consortium.

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Cite This Study

Seres et al. (2026) studied this question.

synapsesocial.com/papers/69be38216e48c4981c67855ahttps://doi.org/10.1017/hpl.2025.10103
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