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	<title>FOTOPLASMAT: Centru de Inovare în Fotonică și Plasmă &#8211; Institutul National pentru Fizica Laserilor, Plasmei si Radiatiei</title>
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		<title>Facilităţi</title>
		<link>https://inflpr.wp.stdev.ro/2025/06/25/facilitati-2/</link>
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		<dc:creator><![CDATA[Calamar Ionut]]></dc:creator>
		<pubDate>Wed, 25 Jun 2025 12:27:31 +0000</pubDate>
				<category><![CDATA[CETAL: Programul Centrului pentru Tehnologii Laser Avansate]]></category>
		<category><![CDATA[Departament Laseri]]></category>
		<category><![CDATA[FOTOPLASMAT: Centru de Inovare în Fotonică și Plasmă]]></category>
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					<description><![CDATA[Research Infrastructure at INFLPR: &#8211; Femtosecond lasers &#8211; Pulsed Laser Deposition systems &#8211; Laser pyrolysis CETAL-PW Laser Infrastructure &#8211; 1 PW Laser System Manufacturer: Thales Optonics, France. Key features of the laser: • Peak power outputs: 1 PW / 45 TW • Ultra-short pulses, aproximately 25 fs • Spectral broadening by using XPW filter in the Front End • Pulse shaping by spectral phase and amplitude manipulation with an Acousto Optic Programmable Dispersion Filter (AOPDF) DAZZLER • High intensity ps contrast, &#62; 1010 @100 ps • Improvement of picosecond pre pulse intensity contrast by use of XPW filter • High Strehl Ratio, more than 0.75. • Wavefront control using adaptive optics PW &#8211; Laser TEWALAS facility &#8211; 20 TW laser system At the beginning of the year 2009 a high power Ti:Sapphire laser was installed in our laboratory. The amplified system Pulsar20 (Amplitude Technologies) provide 10 Hz pulses with 22 fs pulse duration and max. 450 mJ pulse energy. The system is used for high harmonic generation, X-ray laser experiments, plasma experiments, high power pulsed lasers development and experiments. The system is able to output beams from the oscillator (80MHz) and from each of the amplification modules (10 Hz) at different energy level. TEWALAS laser &#160;&#160; CPA &#8211; laser system Experiments with a femtosecond laser at microJules energy level and 2KHz repetition rate are done with a CPA system (Clark-MRX 2101). The amplified output beam is at 775 nm wavelength, with 200 fs pulse duration and the max. pulse energy is 0.7 mJ. This system is used in experiments such as laser ablation for micro and nano-structuring experiment on ceramics, semiconductors and metallic film, or two-photon photo-polymerization of photoresists for 3D micro-structuring, development of a multipulses laser for pump-probe experiments. An additional output from the oscillator of the CPA offers femtosecond laser beam at 35 MHz for ultrafast laser spectroscopy. CPA femtosecond laser &#160;&#160; Nano-second and pico-second Solid-State Lasers Our group has a large experience in design and construction of flash and diode pumped solid-state lasers, laser microchip based microlasers, amplified solid-state lasers. Our most recent realisation (project NANOLAS) is a compact Nd:YAG laser with diode pumped microlaser, amplified in a multipass configuration up to 20 mJ pulse energy at 1-10 Hz. The laser can provide output beams at 1064, 532, and 266 nm, with pulse duration of about 450 ps. These laser radiations are suitable to applications such as laser microprocessing, laser induced break-down spectroscopy (LIBS), Near-field nanopatterning (see figure below) Laser near-filed nanolithography on monodispersed colloidal nanoparticles deposited on gold thin film. Laser wavelength l=532 nm. Pulse duration t=450 ps. &#160;&#160; Microscope for Laser Direct Writing During the recent research projects we developed a microscope for Laser Direct Writing. Coupled with our femtosecond lasers, the microscope is able to produce by laser ablation any computer designed structures with submicrometer resolution on various materials. Laser induced forward transfer (LIFT) is an other method to direct write microstructures using semiconductors, metallic films, or even biological tissues. We successfully tested the two-photon photopolymerization (TPP) technique on photoresist using two different high repetition rate femtosecond lasers (the attenuated CPA laser at 2 KHz, and a femtosecond oscillator at 80 MHz). The software of our microprocessing microscope is able to create predefined 3D geometries or to import 3D files in STL format, as in the well known rapid prototyping technique. 3D micro-structures on photo-polymers. Caracterizări morfologice, structurale şi compoziţionale Tomografie Laborator de biologie Alte echipamente ‹ Proiecte internationale sus Caracterizări morfologice, structurale şi compoziţionale ›]]></description>
										<content:encoded><![CDATA[<p><html><head></head><body></p>
<p>Research Infrastructure at INFLPR:<br />
&#8211; Femtosecond lasers<br />
&#8211; Pulsed Laser Deposition systems<br />
&#8211; Laser pyrolysis</p>
<table>
<tbody>
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    </td>
<td>
<h2><a name="PW" href="http://cetal.inflpr.ro/newsite/pw_facility" target="_blank">CETAL-PW  Laser Infrastructure &#8211; 1 PW Laser System</a></h2>
<p>
        Manufacturer: Thales Optonics, France.<br />
        Key features of the laser:<br />
        •  Peak power outputs: 1 PW / 45 TW<br />
        •  Ultra-short pulses, aproximately 25 fs<br />
        •  Spectral broadening by using XPW filter in the Front End<br />
        •  Pulse shaping by spectral phase and amplitude manipulation with an Acousto Optic Programmable Dispersion                                  Filter (AOPDF) DAZZLER<br />
        •  High intensity ps contrast, &gt; 1010 @100 ps<br />
        •  Improvement of picosecond pre pulse intensity contrast by use of XPW filter<br />
        •  High Strehl Ratio, more than 0.75.<br />
        •  Wavefront control using adaptive optics
        </p>
<p>        <i>PW &#8211; Laser</i></p>
<p>        <img decoding="async" src="http://cetal.inflpr.ro/_files/_PW/pictures/CETAL_THALES.png" width="330px"></p>
<hr>
</td>
</tr>
<tr>
<td>
    </td>
<td>
<h2><a name="TEWALAS" href="http://cetal.inflpr.ro/tewalas" target="_blank">TEWALAS facility &#8211; 20 TW laser system</a></h2>
<p>
        At the beginning of the year 2009 a high power Ti:Sapphire laser was installed in our laboratory. The amplified system <i>Pulsar20</i> (<a href="http://www.amplitude-technologies.com">Amplitude Technologies</a>) provide 10 Hz pulses with 22 fs pulse duration and max. 450 mJ pulse energy.<br />
        The system is used for high harmonic generation, X-ray laser experiments, plasma experiments, high power pulsed lasers development and experiments. The system is able to output beams from the oscillator (80MHz) and from each of the amplification modules (10 Hz) at different energy level.
        </p>
<p>        <i>TEWALAS laser</i></p>
<p>        <img decoding="async" src="http://ssll.inflpr.ro/myImages/tewalas.jpg"></p>
<hr>
</td>
</tr>
<tr>
<td>
    </td>
<td>
<p>&nbsp;&nbsp;</p>
<h2><a name="CPA">CPA &#8211; laser system</a></h2>
<p>
        Experiments with a femtosecond laser at microJules energy level and 2KHz repetition rate are done with a CPA system (<a href="http://www.clark-mrx.com">Clark-MRX 2101</a>).<br />
        The amplified output beam is at 775 nm wavelength, with 200 fs pulse duration and the max. pulse energy is 0.7 mJ.<br />
        This system is used in experiments such as laser ablation for micro and nano-structuring experiment on ceramics, semiconductors and metallic film, or two-photon photo-polymerization of photoresists for 3D micro-structuring, development of a multipulses laser for pump-probe experiments.<br />
        An additional output from the oscillator of the CPA offers femtosecond laser beam at 35 MHz for ultrafast laser spectroscopy.
        </p>
<p>        <i>CPA femtosecond laser</i></p>
<p>        <img decoding="async" src="http://ssll.inflpr.ro/myImages/clarkMRX.gif"></p>
<hr>
</td>
</tr>
<tr>
<td>
    </td>
<td>
<p>&nbsp;&nbsp;</p>
<h2><a name="YAG">Nano-second and pico-second Solid-State Lasers</a></h2>
<p> Our group has a large experience in design and construction of<br />
        flash and diode pumped solid-state lasers, laser microchip based microlasers, amplified solid-state lasers.<br />
        Our most recent realisation (project <a href="http://ssll.inflpr.ro/NANOLAS/index.htm">NANOLAS</a>) is a compact Nd:YAG laser with<br />
        diode pumped microlaser, amplified in a multipass configuration up to 20 mJ pulse energy at 1-10 Hz.<br />
        The laser can provide output beams at 1064, 532, and 266 nm, with pulse duration of about 450 ps.<br />
        These laser radiations are suitable to applications such as laser microprocessing, laser induced break-down spectroscopy (LIBS), Near-field nanopatterning (see figure below)
        </p>
<p>        <i>Laser near-filed nanolithography on monodispersed colloidal nanoparticles deposited on gold thin film. Laser wavelength l=532 nm. Pulse duration t=450 ps.</i></p>
<p>        <img decoding="async" src="http://ssll.inflpr.ro/myImages/NFstructuring.jpg"></p>
<hr>
</td>
</tr>
<tr>
<td>
    </td>
<td>
<p>&nbsp;&nbsp;</p>
<h2><a name="DLW">Microscope for Laser Direct Writing</a></h2>
<p>During the recent research projects we developed a microscope for Laser Direct Writing.<br />
        Coupled with our femtosecond lasers, the microscope is able to produce by laser ablation any computer designed structures with submicrometer resolution on various materials.<br />
        Laser induced forward transfer (LIFT) is an other method to direct write microstructures using semiconductors, metallic films, or even biological tissues.<br />
        We successfully tested the two-photon photopolymerization (TPP) technique on photoresist using two different high repetition rate femtosecond lasers (the attenuated CPA laser at 2 KHz, and a femtosecond oscillator at 80 MHz).<br />
        The software of our microprocessing microscope is able to create predefined 3D geometries or to import 3D files in STL format, as in the well known rapid prototyping technique.
        </p>
<p>        <i>3D micro-structures on photo-polymers.</i></p>
<p>        <img decoding="async" src="http://ssll.inflpr.ro/myImages/Scaffold.jpg"><img decoding="async" src="http://ssll.inflpr.ro/myImages/Column.jpg"><img decoding="async" src="http://ssll.inflpr.ro/myImages/Block3D.jpg"></p>
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