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  <title type="html">Laser Manufacturing</title>
  <subtitle>Refining the processes (among which laser electrospinning, laser additive manufacturing or laser shock peening) involved in laser (nano)machining, laser printing or surface engineering, and using them for custom fabrication.</subtitle>
  <updated>2020-11-02T14:28:55+01:00</updated>
  <link href="atom.xml" rel="alternate" type="text/html" xml:base="https://www.laserlab-europe.eu/transnational-access/find-a-facility/laser-manufacturing/"/>
  <id>urn:syndication:fec02b50d9f5478a9f50fb90037780d9</id>
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    <entry>
      <title>CLF (Oxfordshire, UK)</title>
      <link rel="alternate" type="text/html" href="https://www.laserlab-europe.eu/about-us/partners/clf" />
      
      <id>urn:syndication:f42707e72185c88fd422afe6330c6282</id>
      <summary>The CLF offers access to five unique laser facilities for multi-disciplinary research. VULCAN operates two target areas: a high energy 1 PW capability and a synchronised 100 TW &amp; 2 kJ/ns capability, both with very flexible configurations for research in high energy density science. GEMINI offers a unique synchronised dual beam capability with 0.5 PW beams operating at one shot every 20 seconds, focussing on plasma accelerators and the generation and application of secondary sources. ARTEMIS has three beamlines utilising HHG, at 1 kHz/800 nm/200 eV and 100 kHz/1700 nm/1 keV (due online shortly), with a wide suite of end stations for pump-probe experiments in ultrafast XUV science. ULTRA is an ultrafast pump-probe laser spectroscopy facility, combining laser, detector and sample manipulation technology to probe ultrafast molecular dynamics. OCTOPUS: a suite of imaging and laser trapping capabilities, such as super-resolution (including cryogenic), confocal, and light sheet microscopy, single molecule imaging/tracking, and focused ion beam SEM.</summary>
      

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

      <published>2024-08-29T15:47:10+01:00</published>

      <updated>2024-08-29T15:47:10+01:00</updated>

      
        <category term="Atomic and Molecular Physics"/>
      
        <category term="Nuclear Physics"/>
      
        <category term="Condensed Matter Physics"/>
      
        <category term="Phase Transition Physics"/>
      
        <category term="Surface Physics"/>
      
        <category term="Plasma Physics"/>
      
        <category term="Warm Dense Matter"/>
      
        <category term="Laboratory Astrophysics &amp; Planetology"/>
      
        <category term="Harmonics"/>
      
        <category term="Particles"/>
      
        <category term="Radiation"/>
      
        <category term="EMP Techniques"/>
      
        <category term="Nonlinear and Quantum Optics"/>
      
        <category term="Quantum Physics"/>
      
        <category term="Chemical Physics"/>
      
        <category term="Physical Chemistry"/>
      
        <category term="Solvation Chemistry"/>
      
        <category term="Organic Chemistry"/>
      
        <category term="Fullerene Chemistry"/>
      
        <category term="Stereochemistry"/>
      
        <category term="Combustion and Catalysis"/>
      
        <category term="Inorganic Chemistry"/>
      
        <category term="Coordination Chemistry"/>
      
        <category term="Analytic Chemistry"/>
      
        <category term="Cellular and Molecular Biology"/>
      
        <category term="Biophysics"/>
      
        <category term="Structural Biology"/>
      
        <category term="Metabolomics"/>
      
        <category term="Botany"/>
      
        <category term="Natural Light Harvesting"/>
      
        <category term="Food Science"/>
      
        <category term="Plasma Optics"/>
      
        <category term="Amplification and Compression Techniques"/>
      
        <category term="Novel Materials"/>
      
        <category term="Materials Under Radiation"/>
      
        <category term="Imaging for Life Sciences"/>
      
        <category term="Other Imaging and Analysis"/>
      
        <category term="Novel Detectors"/>
      
        <category term="Advanced Laser Diagnostics"/>
      
        <category term="Laser Manufacturing"/>
      
        <category term="Optoelectronics"/>
      
        <category term="Organic Electronics"/>
      
        <category term="EUV Lithography"/>
      
        <category term="Cancer Research"/>
      
        <category term="Immunology"/>
      
        <category term="Light Therapy and Disinfection"/>
      
        <category term="Parasitology"/>
      
        <category term="Medical Imaging"/>
      
        <category term="Pharmacology"/>
      
        <category term="Laser Fusion"/>
      
        <category term="Solar Energy"/>
      
        <category term="Ecology"/>
      
        <category term="Cultural Heritage and Historical Preservation"/>
      

    </entry>

  
    <entry>
      <title>CLPU (Salamanca, Spain)</title>
      <link rel="alternate" type="text/html" href="https://www.laserlab-europe.eu/about-us/partners/clpu" />
      
      <id>urn:syndication:6c03aa04386a96d9f250ab174a35a5a3</id>
      <summary>CLPU operates VEGA, a multi Terawatt laser system composed by three independent and synchronised 30 fs long Ti:Sa based-laser pulses:  VEGA-3 of 1 PW (at 1Hz), VEGA- 2 of 200 TW and VEGA-1 of 20 TW (both up to 10 Hz). Besides its architecture, the uniqueness of VEGA is that it is a petawatt-class laser system of high-repetition rate.</summary>
      

      <author>
        
        <name>davenport</name>
        
      </author>

      <published>2024-06-13T08:40:36+01:00</published>

      <updated>2024-06-13T08:40:36+01:00</updated>

      
        <category term="Atomic and Molecular Physics"/>
      
        <category term="Attophysics"/>
      
        <category term="Nuclear Physics"/>
      
        <category term="Plasma Physics"/>
      
        <category term="Warm Dense Matter"/>
      
        <category term="Laboratory Astrophysics &amp; Planetology"/>
      
        <category term="Harmonics"/>
      
        <category term="Particles"/>
      
        <category term="Radiation"/>
      
        <category term="EMP Techniques"/>
      
        <category term="Nonlinear and Quantum Optics"/>
      
        <category term="Quantum Physics"/>
      
        <category term="Plasma Optics"/>
      
        <category term="Amplification and Compression Techniques"/>
      
        <category term="Innovative Lasing"/>
      
        <category term="Materials Under Radiation"/>
      
        <category term="Imaging for Life Sciences"/>
      
        <category term="Other Imaging and Analysis"/>
      
        <category term="Novel Detectors"/>
      
        <category term="Advanced Laser Diagnostics"/>
      
        <category term="Laser Manufacturing"/>
      
        <category term="Cancer Research"/>
      
        <category term="Medical Imaging"/>
      
        <category term="Laser Fusion"/>
      
        <category term="Cultural Heritage and Historical Preservation"/>
      

    </entry>

  
    <entry>
      <title>HILASE (Dolni Břežany, Czech Republic)</title>
      <link rel="alternate" type="text/html" href="https://www.laserlab-europe.eu/about-us/partners/hilase" />
      
      <id>urn:syndication:8c9f525ef155438381c78269d3d96e80</id>
      <summary>HiLASE operates two diode-pumped Yb:YAG solid state laser facilities: Bivoj, delivering over 1 kW of average power in 105 J, 10 ns pulses at 10 Hz, for laser shock peening and ion generation, and Perla, a high average power laser platform generating &lt; 2 ps pulses in broad spectral region from 206 nm to 3 microns for laser processing.</summary>
      

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

      <published>2020-03-06T09:55:00+01:00</published>

      <updated>2024-02-07T10:55:33+01:00</updated>

      
        <category term="Plasma Physics"/>
      
        <category term="Laboratory Astrophysics &amp; Planetology"/>
      
        <category term="Particles"/>
      
        <category term="Nonlinear and Quantum Optics"/>
      
        <category term="Amplification and Compression Techniques"/>
      
        <category term="Innovative Lasing"/>
      
        <category term="Materials Under Radiation"/>
      
        <category term="Novel Detectors"/>
      
        <category term="Advanced Laser Diagnostics"/>
      
        <category term="Laser Manufacturing"/>
      

    </entry>

  
    <entry>
      <title>LENS (Florence, Italy)</title>
      <link rel="alternate" type="text/html" href="https://www.laserlab-europe.eu/about-us/partners/lens" />
      
      <id>urn:syndication:2d38efe5213c1e4299ceaf4c89e2f7ba</id>
      <summary>LENS, the European Laboratory for Non-Linear Spectroscopy, is a center of excellence at the University of Florence. Research interests include photonics, biophysics, chemistry and atomic physics. Three different main research areas (BIOPHOTONICS, PHOTONIC MATERIALS, ATOMIC PHYSICS) and more than twenty research topics, corresponding to active laboratories, are presently running.</summary>
      

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

      <published>2022-03-21T14:46:49+01:00</published>

      <updated>2022-03-21T14:46:49+01:00</updated>

      
        <category term="Atomic and Molecular Physics"/>
      
        <category term="Condensed Matter Physics"/>
      
        <category term="Soft Matter Physics"/>
      
        <category term="Phase Transition Physics"/>
      
        <category term="Harmonics"/>
      
        <category term="Nonlinear and Quantum Optics"/>
      
        <category term="Radiation"/>
      
        <category term="Quantum Physics"/>
      
        <category term="Physical Chemistry and Chemical Physics"/>
      
        <category term="Quantum Chemistry"/>
      
        <category term="Solvation Chemistry"/>
      
        <category term="Organic Chemistry"/>
      
        <category term="Inorganic Chemistry"/>
      
        <category term="Coordination Chemistry"/>
      
        <category term="Astrochemistry"/>
      
        <category term="Cellular and Molecular Biology"/>
      
        <category term="Biophysics"/>
      
        <category term="Amplification and Compression Techniques"/>
      
        <category term="Innovative Lasing"/>
      
        <category term="Novel Materials"/>
      
        <category term="Materials Under Radiation"/>
      
        <category term="Imaging for Life Sciences"/>
      
        <category term="Advanced Laser Diagnostics"/>
      
        <category term="Laser Manufacturing"/>
      
        <category term="Tissue Engineering"/>
      
        <category term="Optoelectronics"/>
      
        <category term="Other Nanobiotechnology"/>
      
        <category term="Quantum Information"/>
      
        <category term="Cancer Research"/>
      
        <category term="Light Therapy and Disinfection"/>
      
        <category term="Medical Imaging"/>
      
        <category term="Solar Energy"/>
      
        <category term="Geoscience"/>
      

    </entry>

  
    <entry>
      <title>LP3 (Marseille, France)</title>
      <link rel="alternate" type="text/html" href="https://www.laserlab-europe.eu/about-us/partners/lp3" />
      
      <id>urn:syndication:0f7eb993a1d67cd189b4ebf7511f53bc</id>
      <summary>LP3 is a multidisciplinary academic laboratory of excellence. Its major activities focus on: i) generation of secondary sources such as hard X-ray by laser-induced plasma technology ii) fundamentals and technological research of laser-matter interactions and iii) development of laser-based processes. The main applications are related to laser structuration and fabrication with major outcomes in photonics, microelectronics, medicine and laser-based diagnostics.</summary>
      

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

      <published>2022-03-30T15:51:39+01:00</published>

      <updated>2022-03-30T15:51:39+01:00</updated>

      
        <category term="Atomic and Molecular Physics"/>
      
        <category term="Condensed Matter Physics"/>
      
        <category term="Phase Transition Physics"/>
      
        <category term="Surface Science"/>
      
        <category term="Plasma Physics"/>
      
        <category term="Warm Dense Matter"/>
      
        <category term="Particles"/>
      
        <category term="Radiation"/>
      
        <category term="Physical Chemistry and Chemical Physics"/>
      
        <category term="Organic Chemistry"/>
      
        <category term="Inorganic Chemistry"/>
      
        <category term="Plasma Optics"/>
      
        <category term="Novel Materials"/>
      
        <category term="Materials Under Radiation"/>
      
        <category term="Imaging for Life Sciences"/>
      
        <category term="In-situ Imaging for Machining"/>
      
        <category term="Other Imaging and Analysis"/>
      
        <category term="Advanced Laser Diagnostics"/>
      
        <category term="Plasma Diagnostics"/>
      
        <category term="Laser Manufacturing"/>
      
        <category term="Tissue Engineering"/>
      
        <category term="Optoelectronics"/>
      
        <category term="Nanoelectronics"/>
      
        <category term="Organic Electronics"/>
      
        <category term="Other Nanobiotechnology"/>
      
        <category term="Light Therapy and Disinfection"/>
      
        <category term="Medical Imaging"/>
      

    </entry>

  
    <entry>
      <title>ULF-FORTH (Heraklion, Greece)</title>
      <link rel="alternate" type="text/html" href="https://www.laserlab-europe.eu/about-us/partners/ulf-forth" />
      
      <id>urn:syndication:a4a50b5bb01d49aed3fed781d1581ff6</id>
      <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>

      
        <category term="Atomic and Molecular Physics"/>
      
        <category term="Attophysics"/>
      
        <category term="Condensed Matter Physics"/>
      
        <category term="Phase Transition Physics"/>
      
        <category term="Surface Science"/>
      
        <category term="Plasma Physics"/>
      
        <category term="Harmonics"/>
      
        <category term="Particles"/>
      
        <category term="Radiation"/>
      
        <category term="Quantum Physics"/>
      
        <category term="Strong-Field Physics"/>
      
        <category term="Physical Chemistry and Chemical Physics"/>
      
        <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"/>
      
        <category term="Advanced Laser Diagnostics"/>
      
        <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"/>
      

    </entry>

  
    <entry>
      <title>VULRC (Vilnius, Lithuania)</title>
      <link rel="alternate" type="text/html" href="https://www.laserlab-europe.eu/about-us/partners/vulrc" />
      
      <id>urn:syndication:1694e24bec34d7f5f1c35ff9c0952d9c</id>
      <summary>Vilnius University Laser Research Center (VULRC) hosts a number of laboratories dedicated to fundamental and applied laser research. The research topics include but are not limited to laser micromachining, nanophotonics, standardized metrology of optical components, development of novel laser and parametric sources, investigation of nonlinear phenomena in the NIR and MIR spectral ranges, generation and application of broadband terahertz pulses, time-resolved spectroscopy, nonlinear microscopy and laser induced breakdown spectroscopy.</summary>
      

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

      <published>2023-09-29T10:38:34+01:00</published>

      <updated>2023-09-29T10:38:34+01:00</updated>

      
        <category term="Radiation"/>
      
        <category term="Nonlinear and Quantum Optics"/>
      
        <category term="Plasma Optics"/>
      
        <category term="Amplification and Compression Techniques"/>
      
        <category term="Innovative Lasing"/>
      
        <category term="Other Imaging and Analysis"/>
      
        <category term="Laser Manufacturing"/>
      
        <category term="Tissue Engineering"/>
      
        <category term="Condensed Matter Physics"/>
      
        <category term="Harmonics"/>
      

    </entry>

  

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