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Registro Completo |
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Biblioteca(s): |
Embrapa Instrumentação. |
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Data corrente: |
25/06/2024 |
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Data da última atualização: |
31/07/2024 |
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Tipo da produção científica: |
Artigo em Periódico Indexado |
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Autoria: |
STENIO, K.; MILORI, D. M. B. P. |
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Afiliação: |
FEDERAL UNIVERSITY OF SAO CARLOS; DEBORA MARCONDES BASTOS PEREIRA, CNPDIA. |
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Título: |
LIBSsa: an open source software for analyzing LIBS spectra. |
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Ano de publicação: |
2024 |
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Fonte/Imprenta: |
Journal of Open Source Software, v. 9, n. 93, 5961, 2024. |
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Páginas: |
1 - 6 |
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DOI: |
https://doi.org/10.21105/joss.05961. |
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Idioma: |
Inglês |
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Conteúdo: |
Summary Laser-Induced Breakdown Spectroscopy (LIBS) is a technique that uses a high-energy pulsed laser to detect and analyze elements present in a sample. The laser beam is directed through an optical system (commonly mirrors, lenses, prisms, or optical fibers) and focused onto the sample’s surface. When the laser interacts with the sample, a part is ablated, vaporized, and generates a high-temperature plasma. The species in the plasma emit electromagnetic radiation characteristics of each element in the sample. This radiation is collected by lenses and conveyed through an optical fiber to a spectrometer, where diffraction occurs. The diffracted light is detected using a CCD (charge-coupled device) or ICCD (intensified charge-coupled device). Finally, a spectrum (Figure 1) is generated (Miziolek et al., 2006). |
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Palavras-Chave: |
Laser. |
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Categoria do assunto: |
-- |
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Marc: |
LEADER 01322naa a2200169 a 4500 001 2165094 005 2024-07-31 008 2024 bl uuuu u00u1 u #d 024 7 $ahttps://doi.org/10.21105/joss.05961.$2DOI 100 1 $aSTENIO, K. 245 $aLIBSsa$ban open source software for analyzing LIBS spectra.$h[electronic resource] 260 $c2024 300 $a1 - 6 520 $aSummary Laser-Induced Breakdown Spectroscopy (LIBS) is a technique that uses a high-energy pulsed laser to detect and analyze elements present in a sample. The laser beam is directed through an optical system (commonly mirrors, lenses, prisms, or optical fibers) and focused onto the sample’s surface. When the laser interacts with the sample, a part is ablated, vaporized, and generates a high-temperature plasma. The species in the plasma emit electromagnetic radiation characteristics of each element in the sample. This radiation is collected by lenses and conveyed through an optical fiber to a spectrometer, where diffraction occurs. The diffracted light is detected using a CCD (charge-coupled device) or ICCD (intensified charge-coupled device). Finally, a spectrum (Figure 1) is generated (Miziolek et al., 2006). 653 $aLaser 700 1 $aMILORI, D. M. B. P. 773 $tJournal of Open Source Software$gv. 9, n. 93, 5961, 2024.
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