Русский

ELI and LLNL strengthen transatlantic large-scale laser cooperation

682
2025-07-09 10:33:21
Посмотреть перевод

Lawrence Livermore National Laboratory (LLNL) and the Extreme Light Infrastructure (ELI) European Research Infrastructure Consortium (ERIC) have announced that they have signed a new Memorandum of Understanding. This builds on their existing decade of strategic collaboration to advance high-power laser technology.

“We are looking forward to expanding our existing collaborations with ELI on areas such as ultrabright high-repetition-rate sources for enhanced radiography, fusion and plasma physics research,” said James McCarrick, LLNL program director for High Energy Density and Photon Systems.

“This includes developing technologies with multiple applications such as high-repetition-rate target systems and diagnostics that can survive sustained operation close to one of the highest intensity and highest average power lasers in the world.”

ELI and LLNL have a long-standing partnership that began with LLNL building and delivering the L3 HAPLS (High-Repetition-Rate Advanced Petawatt Laser System) to the ELI Beamlines Facility near Prague in the Czech Republic. L3 HAPLS is designed to deliver petawatt-class pulses with energy of at least 30 joules and durations below 30 femtoseconds, at a 10 Hz repetition rate.

The system is already extensively used, capitalizing on its reliability and high repetition rate, while a clear plan is in place to continue ramping up its performance toward the full technical design parameters. These capabilities are essential for driving secondary sources like electrons, ions and x-rays, and for advancing the understanding of laser-plasma interactions.

The L3 HAPLS is a central feature of ELI's scientific offerings and provides a powerful tool for exploring high-intensity laser experiments with relevant applications to fields like materials science, medical therapy and non-destructive analysis. It is also particularly well suited for exploratory research in laser-driven fusion.

ELI as ‘proving ground’
ELI also has already acted as a proving ground for LLNL machine learning and optimization technologies. Last year, LLNL researchers performed an experiment in cooperation with ELI staff that integrated machine learning and optimization technologies to enhance the performance of the L3 system. This effectively boosted precision and efficiency, paving the way for even greater advancements in high-power laser experiments and research. The success of this experiment opens new avenues in laser-plasma interaction physics.

The close cooperation with the U.S. scientific user community is evident in the growing demand for ELI’s facilities within the framework of ELI’s user program. With experiment proposal submissions increasing and a rising user base, the U.S. stands out as the country with the third-highest number of proposals in the past five mission-based access calls. This underscores the significance of transatlantic cooperation in advancing laser science and highlights the strong and ongoing engagement of U.S.-affiliated researchers in ELI’s user program.

“We are pleased to see the active engagement of U.S.-based researchers in experiments at ELI, leveraging the advanced technology, including the L3 HAPLS system,” said Allen Weeks, ELI ERIC Director General. “This collaboration exemplifies the strength of international partnerships in driving forward scientific research and technological advancements. Together ELI and LLNL are shaping the future of laser science.”

The new agreement lays the foundation for the exchange of staff, internship opportunities for students and postdocs and fostering a culture of knowledge-sharing and intellectual collaboration. These initiatives will not only strengthen the ties between the two institutions but also expand the scope of joint research initiatives. Through this continued collaboration, ELI and LLNL are committed to addressing the challenges of tomorrow and shaping the future of laser science and technology.

Source: optics.org

Связанные рекомендации
  • Shanghai Optics and Machinery Institute has made progress in near-field state analysis of high-power laser devices based on convolutional neural networks

    Recently, the research team of the High Power Laser Physics Joint Laboratory of the Chinese Academy of Sciences Shanghai Institute of Optics and Fine Mechanics identified and analyzed the abnormal near-field output of the SG - Ⅱ upgrade device by using the spatial domain computing method and the deep learning model with attention mechanism in response to the requirements of real-time and effective...

    2024-04-25
    Посмотреть перевод
  • Rachel's latest laser welding and cutting machine processes thicker materials at lightning speed

    Rachel is a pioneer in laser technology solutions and is pleased to announce a significant update to its laser welding and cutting machines. These enhanced features aim to provide customers with faster turnaround time and higher accuracy, reaffirming Rachel Corporation's commitment to providing cutting-edge laser cutting and welding solutions to meet the needs of different industries.Lache Company...

    2024-04-07
    Посмотреть перевод
  • Jenoptik invests 100 million euros to open new factory

    On May 30th, Jenoptik announced on its official WeChat account that after approximately two and a half years of construction, its new factory in Dresden, Germany, with an investment of nearly 100 million euros, has officially opened. This is the largest single investment project in Jenoptik's recent history.Jenoptik President and CEO Dr. Stefan Traeger stated that this new factory will make Dresde...

    06-05
    Посмотреть перевод
  • The Stanford University team has manufactured the first practical chip grade titanium sapphire laser

    According to a report in Nature on June 26th, a team from Stanford University in the United States has developed a titanium sapphire laser on a chip. Whether in terms of scale efficiency or cost, this achievement is a huge progress. Image source: Nature websiteTitanium sapphire lasers are indispensable in many fields such as cutting-edge quantum optics, spectroscopy, and neuroscience, but they ...

    2024-07-01
    Посмотреть перевод
  • Excitation of nanostructures with two near-infrared lasers to increase emission intensity

    Recently, researchers from the Ultrafast Phenomena Laboratory at the University of Warsaw in Poland, in collaboration with a team from the Institute of Low Temperature and Structural Studies at the Polish Academy of Sciences, discovered an enhanced effect on upconversion nanoparticle emission. Relevant personnel have demonstrated that simultaneously exciting these nanostructures with two near-infr...

    09-28
    Посмотреть перевод