<?xml version="1.0"?>
<rdf:RDF xmlns:foaf="http://xmlns.com/foaf/0.1/" xmlns:owl="http://www.w3.org/2002/07/owl#" xmlns:rdfs="http://www.w3.org/2000/01/rdf-schema#" xmlns:rdf="http://www.w3.org/1999/02/22-rdf-syntax-ns#" xmlns:dcat="http://www.w3.org/ns/dcat#" xmlns:dct="http://purl.org/dc/terms/" xmlns:adms="http://www.w3.org/ns/adms#" xmlns:dc="http://purl.org/dc/elements/1.1/" xmlns:time="http://www.w3.org/2006/time#" xmlns:dcterms="http://purl.org/dc/terms/" xmlns:vcard="http://www.w3.org/2006/vcard/ns#"><dcat:Dataset rdf:about="https://inptdat.de/dataset/laser-induced-plasma-formation-water-400-mj-double-pulse-libs-part-2"><dct:title>Laser-induced plasma formation in water with up to 400 mJ double-pulse LIBS (part 2)</dct:title><dct:description><![CDATA[<p>Double-pulse laser induced breakdown spectroscopy (LIBS) measurements in water with up to 600 bar and 400 mJ each pulse were done to select laser parameters which promote optimized spectral line emission from plasma even at elevated pressures, where line broadening until loss of the most spectral information can occur. Optical emission spectroscopy, using a Czerny-Turner spectrometer, has been applied to investigate the dependence of the emitted radiation on laser parameters and hydrostatic pressure. It has been found, that higher laser pulse energies, especially with high water pressure, can also have an adverse effect on the measured spectrum. The spectral data was measured with an Roper Acton Spectra Pro 500i with connected PI-MAX2 camera. All data is available in internal spe format and as converted tif files. A metdata file with all relevant parameters is provided in xml format.</p>
]]></dct:description><dcat:keyword>Laser-induced plasma</dcat:keyword><dcat:keyword>plasma in liquids</dcat:keyword><dcat:theme>Materials / Surfaces, Plasma Chemical Processes, Plasma in Liquids, Thermal Plasma Technology</dcat:theme><dct:identifier>b7406773-2549-40ba-a87f-684cb41f2ba7</dct:identifier><dct:issued>2023-07-08T22:49:41+02:00</dct:issued><dct:modified>2024-02-27T10:27:46+01:00</dct:modified><dct:language>en</dct:language><dct:publisher>INP, LZH</dct:publisher><dcat:distribution rdf:resource="https://inptdat.de/dataset/laser-induced-plasma-formation-water-400-mj-double-pulse-libs-part-2/resource/6a987ce2-1fc1"/><dcat:distribution rdf:resource="https://inptdat.de/dataset/laser-induced-plasma-formation-water-400-mj-double-pulse-libs-part-2/resource/58bc4546-c518"/><dcat:distribution rdf:resource="https://inptdat.de/dataset/laser-induced-plasma-formation-water-400-mj-double-pulse-libs-part-2/resource/9317feba-ba75"/></dcat:Dataset><dcat:Distribution rdf:about="https://inptdat.de/dataset/laser-induced-plasma-formation-water-400-mj-double-pulse-libs-part-2/resource/6a987ce2-1fc1"><dct:title>Laser-induced plasma formation in water - SPE files</dct:title><dct:description><![CDATA[<p>Raw data for different parameter combinations (see resource metadata file). The file format is for programs of the company Teledyne Princeton Instruments and contains both the signal and the wavelength calibration.</p>
]]></dct:description><dct:issued>2023-07-04T22:34:20+02:00</dct:issued><dct:modified>2023-07-08T00:15:52+02:00</dct:modified><dcat:accessURL rdf:resource=""/><dcat:downloadURL rdf:resource="https://inptdat.de/system/files/node728_SPE.zip"/><dcat:mediaType>application/zip</dcat:mediaType><dct:format>zip</dct:format><dcat:byteSize>11094922</dcat:byteSize><foaf:page>https://inptdat.de/dataset/laser-induced-plasma-formation-water-400-mj-double-pulse-libs-part-2/resource/6a987ce2-1fc1</foaf:page></dcat:Distribution><dcat:Distribution rdf:about="https://inptdat.de/dataset/laser-induced-plasma-formation-water-400-mj-double-pulse-libs-part-2/resource/58bc4546-c518"><dct:title>Laser-induced plasma formation in water - TIF files</dct:title><dct:description><![CDATA[<p>TIF images of the signal without axis calibration for different parameter combinations (see resource metadata file).</p>
]]></dct:description><dct:issued>2023-07-04T22:36:18+02:00</dct:issued><dct:modified>2023-07-08T00:15:52+02:00</dct:modified><dcat:accessURL rdf:resource=""/><dcat:downloadURL rdf:resource="https://inptdat.de/system/files/node728_TIF.zip"/><dcat:mediaType>application/zip</dcat:mediaType><dct:format>zip</dct:format><dcat:byteSize>10777652</dcat:byteSize><foaf:page>https://inptdat.de/dataset/laser-induced-plasma-formation-water-400-mj-double-pulse-libs-part-2/resource/58bc4546-c518</foaf:page></dcat:Distribution><dcat:Distribution rdf:about="https://inptdat.de/dataset/laser-induced-plasma-formation-water-400-mj-double-pulse-libs-part-2/resource/9317feba-ba75"><dct:title>Laser-induced plasma formation in water - resource metadata</dct:title><dct:description><![CDATA[<p>Metadata for data files contained in the zip archives.</p>
]]></dct:description><dct:issued>2023-07-04T22:42:27+02:00</dct:issued><dct:modified>2023-07-08T00:15:52+02:00</dct:modified><dcat:accessURL rdf:resource=""/><dcat:downloadURL rdf:resource="https://inptdat.de/system/files/node728_metadata.xml"/><dcat:mediaType>text/xml</dcat:mediaType><dct:format>openxml</dct:format><dcat:byteSize>16121</dcat:byteSize><foaf:page>https://inptdat.de/dataset/laser-induced-plasma-formation-water-400-mj-double-pulse-libs-part-2/resource/9317feba-ba75</foaf:page></dcat:Distribution><foaf:Agent rdf:about="https://inptdat.de/publisher/n0"><foaf:name>DKAN</foaf:name><foaf:homepage>https://inptdat.de</foaf:homepage><dct:type rdf:resource="http://purl.org/adms/publishertype/NonProfitOrganisation"/></foaf:Agent></rdf:RDF>
