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  <title type="html">Strong Field Physics</title>
  <subtitle>Studying the interactions between matter and very strong laser fields, and investigating quantum electrodynamics and other induced phenomena such as radiation reaction, light-light scattering, and vacuum polarization.</subtitle>
  <updated>2020-11-02T14:33:16+01:00</updated>
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      <title>LIDYL (Saclay, France)</title>
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      <id>urn:syndication:aa8b0adb61fe9ad1e7aa5c41f5d061cf</id>
      <summary>Located in Saclay, France, LIDYL is a fundamental research laboratory whose activities focus on radiation-matter interaction and applications. LIDYL's research programs cover the study of both electronic and nuclear dynamics, in the gas and condensed phases, from the simplest atomic and molecular systems to the most complex ones (biomolecules and nano-objects) and to laser-created plasmas using high-intensity fs lasers.</summary>
      

      <author>
        
        <name>michel</name>
        
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      <published>2022-03-21T14:46:57+01:00</published>

      <updated>2022-03-21T14:46:57+01:00</updated>

      
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        <category term="Attophysics"/>
      
        <category term="Condensed Matter Physics"/>
      
        <category term="Plasma Physics"/>
      
        <category term="Harmonics"/>
      
        <category term="Particles"/>
      
        <category term="QED"/>
      
        <category term="Physical Chemistry and Chemical Physics"/>
      
        <category term="Biophysics"/>
      
        <category term="Amplification and Compression Techniques"/>
      
        <category term="Materials Under Radiation"/>
      
        <category term="Advanced Laser Diagnostics"/>
      

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      <title>ULF-FORTH (Heraklion, Greece)</title>
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      <summary>The Ultraviolet Laser Facility (ULF-FORTH) is a multi-disciplinary laboratory dedicated to laser-based science. It is the major laser research facility in Greece. ULF-FORTH combines state-of-the-art experimental facilities with a rich spectrum of research activities and expertise including Atomic and Optical physics, Molecular physics and Chemical dynamics, laser-materials interactions, laser applications and techniques in Biomedicine and in Cultural Heritage.</summary>
      

      <author>
        
        <name>michel</name>
        
      </author>

      <published>2023-10-17T09:08:46+01:00</published>

      <updated>2023-10-17T09:08:46+01:00</updated>

      
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        <category term="Combustion and Catalysis"/>
      
        <category term="Metabolomics"/>
      
        <category term="Food Science"/>
      
        <category term="Novel Materials"/>
      
        <category term="Imaging for Life Sciences"/>
      
        <category term="In-situ Imaging for Machining"/>
      
        <category term="Other Imaging and Analysis"/>
      
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        <category term="Plasma Diagnostics"/>
      
        <category term="Laser Manufacturing"/>
      
        <category term="Optoelectronics"/>
      
        <category term="Other Nanobiotechnology"/>
      
        <category term="Quantum Information"/>
      
        <category term="Cancer Research"/>
      
        <category term="Immunology"/>
      
        <category term="Medical Imaging"/>
      
        <category term="Hydrogen"/>
      
        <category term="Batteries"/>
      
        <category term="Atmospheric Science"/>
      
        <category term="Environmental Imaging"/>
      
        <category term="Cultural Heritage and Historical Preservation"/>
      

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