Literature DB >> 25085124

High repetition rate laser-induced breakdown spectroscopy using acousto-optically gated detection.

Pavel Pořízka1, Benjamin Klessen1, Jozef Kaiser2, Igor Gornushkin1, Ulrich Panne1, Jens Riedel1.   

Abstract

This contribution introduces a new type of setup for fast sample analysis using laser-induced breakdown spectroscopy (LIBS). The novel design combines a high repetition rate laser (up to 50 kHz) as excitation source and an acousto-optical modulator (AOM) as a fast switch for temporally gating the detection of the emitted light. The plasma radiation is led through the active medium of the AOM where it is diffracted on the transient ultrasonic Bragg grid. The diffracted radiation is detected by a compact Czerny-Turner spectrometer equipped with a CCD line detector. Utilizing the new combination of high repetition rate lasers and AOM gated detection, rapid measurements with total integration times of only 10 ms resulted in a limit of detection (LOD) of 0.13 wt.% for magnesium in aluminum alloys. This short integration time corresponds to 100 analyses/s. Temporal gating of LIP radiation results in improved LODs and consecutively higher sensitivity of the LIBS setup. Therefore, an AOM could be beneficially utilized to temporally detect plasmas induced by high repetition rate lasers. The AOM in combination with miniaturized Czerny-Turner spectrometers equipped with CCD line detectors and small footprint diode pumped solid state lasers results in temporally gateable compact LIBS setups.

Entities:  

Year:  2014        PMID: 25085124     DOI: 10.1063/1.4890337

Source DB:  PubMed          Journal:  Rev Sci Instrum        ISSN: 0034-6748            Impact factor:   1.523


  1 in total

1.  Multivariate classification of echellograms: a new perspective in Laser-Induced Breakdown Spectroscopy analysis.

Authors:  Pavel Pořízka; Jakub Klus; Jan Mašek; Martin Rajnoha; David Prochazka; Pavlína Modlitbová; Jan Novotný; Radim Burget; Karel Novotný; Jozef Kaiser
Journal:  Sci Rep       Date:  2017-06-09       Impact factor: 4.379

  1 in total

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