• Acta Optica Sinica
  • Vol. 40, Issue 24, 2430002 (2020)
Weihua Huang, Chunjing He, Weiqian Zhao**, and Lirong Qiu*
Author Affiliations
  • Beijing Key Laboratory for Precision Optoelectronic Measurement Instrument and Technology, School of Optics and Photonics, Beijing Institute of Technology, Beijing 100081, China
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    DOI: 10.3788/AOS202040.2430002 Cite this Article Set citation alerts
    Weihua Huang, Chunjing He, Weiqian Zhao, Lirong Qiu. Development of Confocal LIBS Microscope[J]. Acta Optica Sinica, 2020, 40(24): 2430002 Copy Citation Text show less
    References

    [1] Botto A, Campanella B, Legnaioli S et al. Applications of laser-induced breakdown spectroscopy in cultural heritage and archaeology: a critical review[J]. Journal of Analytical Atomic Spectrometry, 34, 81-103(2019).

    [2] Zhang R, Sun L X, Chen T et al. Fingerprint analysis and classification of rock surface based on laser-induced breakdown spectroscopy[J]. Acta Geologica Sinica, 94, 991-998(2020).

    [3] Ying L N, Zhou W D. Comparative analysis of multiple chemometrics methods in application of laser-induced breakdown spectroscopy for quantitative analysis of soil elements[J]. Acta Optica Sinica, 38, 1214002(2018).

    [4] Su Y H, Wang G Q, Pan C Y et al. Influence of sample position fluctuation on spectral characteristic parameters in telemetry LIBS system[J]. Acta Optica Sinica, 40, 0730001(2020).

    [5] Lei P D, Fu H B, Yi D R et al. Characterization of cladding defects via laser-induced breakdown spectroscopy[J]. Chinese Journal of Lasers, 47, 0411001(2020).

    [6] Liu Z, Jia Y H, Han F K et al. Surface/interface quality diagnosis of alloy casting by laser induced breakdown spectroscopy[J]. Spectroscopy and Spectral Analysis, 39, 596-606(2019).

    [7] Yang Y X, Kang J, Wang Y R et al. Super sensitive detection of lead in water by laser-induced breakdown spectroscopy combined with laser-induced fluorescence technique[J]. Acta Optica Sinica, 37, 1130001(2017).

    [8] Gimenez Y, Busser B, Trichard F et al. 3D imaging of nanoparticle distribution in biological tissue by laser-induced breakdown spectroscopy[J]. Scientific Reports, 6, 29936(2016).

    [9] Singh V K, Tripathi D K, Mao X L et al. Elemental mapping of lithium diffusion in doped plant leaves using laser-induced breakdown spectroscopy (LIBS)[J]. Applied Spectroscopy, 73, 387-394(2019).

    [10] Jolivet L, Leprince M, Moncayo S et al. Review of the recent advances and applications of LIBS-based imaging[J]. Spectrochimica Acta Part B: Atomic Spectroscopy, 151, 41-53(2019).

    [11] Sun L X, Wang W, Tian X Y et al. Progress in research and application of micro-laser-induced breakdown spectroscopy[J]. Chinese Journal of Analytical Chemistry, 46, 1518-1527(2018).

    [12] Fabre C, Devismes D, Moncayo S et al. Elemental imaging by laser-induced breakdown spectroscopy for the geological characterization of minerals[J]. Journal of Analytical Atomic Spectrometry, 33, 1345-1353(2018). http://smartsearch.nstl.gov.cn/paper_detail.html?id=d84f4cefb9b5162da40e91091abc4637

    [13] Ahamer C M, Riepl K M, Huber N et al. Femtosecond laser-induced breakdown spectroscopy: elemental imaging of thin films with high spatial resolution[J]. Spectrochimica Acta Part B: Atomic Spectroscopy, 136, 56-65(2017).

    [14] Luo X F, You L B, Xu J et al. Research progress of elemental imaging based on laser-induced breakdown spectroscopy[J]. Laser Technology, 44, 66-73(2020).

    [15] Wang X H, Liang Z S, Meng Y F et al. Sub-microanalysis of solid samples with near-field enhanced atomic emission spectroscopy[J]. Spectrochimica Acta Part B: Atomic Spectroscopy, 141, 1-6(2018).

    [16] Evans E H, Pisonero J. Smith C M M, et al. Atomic spectrometry update: review of advances in atomic spectrometry and related techniques[J]. Journal of Analytical Atomic Spectrometry, 34, 803-822(2019).

    [17] Nicolas G, Mateo M P, Pinon V. 3D chemical maps of non-flat surfaces by laser-induced breakdown spectroscopy[J]. Journal of Analytical Atomic Spectrometry, 22, 1244-1249(2007). http://pubs.rsc.org/en/content/articlepdf/2007/ja/b704682k

    [18] Beresko C, Kohns P, Ankerhold G. Surface element-mapping of three dimensional structures by laser-induced breakdown spectroscopy[J]. Spectrochimica Acta Part B: Atomic Spectroscopy, 99, 20-27(2014).

    [19] Li J M, Guo L B, Zhao N et al. Analysis of ion doping profiles in Yb-doped fiber preforms using laser-induced breakdown spectroscopy[J]. Journal of Analytical Atomic Spectrometry, 31, 492-496(2016).

    [20] Motto-Ros V, Negre E, Pelascini F et al. Precise alignment of the collection fiber assisted by real-time plasma imaging in laser-induced breakdown spectroscopy[J]. Spectrochimica Acta Part B: Atomic Spectroscopy, 92, 60-69(2014).

    [21] Cáceres J O, Pelascini F, Motto-Ros V et al. Megapixel multi-elemental imaging by Laser-Induced Breakdown Spectroscopy, a technology with considerable potential for paleoclimate studies[J]. Scientific Reports, 7, 5080(2017).

    [22] Jiang Z W, Yan Y, Li Y et al. Wide-range and high-precision microscopic focusing system for laser-induced breakdown spectroscopy[J]. Acta Optica Sinica, 38, 1215004(2018).

    [23] Wang W, Sun L X, Zhang P et al. A method of laser focusing control in micro-laser-induced breakdown spectroscopy[J]. Plasma Science and Technology, 21, 034004(2019).

    [24] Huang W H, He C J, Wang Y et al. Confocal controlled LIBS microscopy with high spatial resolution and stability[J]. Journal of Analytical Atomic Spectrometry, 35, 2530-2535(2020).

    Weihua Huang, Chunjing He, Weiqian Zhao, Lirong Qiu. Development of Confocal LIBS Microscope[J]. Acta Optica Sinica, 2020, 40(24): 2430002
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