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Development of a Focal Point Positioning System for Laser Sensing Instruments using Galvano Mirrors and Tunable Lens

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S. Ikezawa, M. Wakamatsu, and T. Ueda, “Development of solution measurement using laser-induced breakdown spectroscopy integrated with micro-droplet ejection system,” IEEJ Transactions on Sensors and Micromachines, vol.127, No.7, pp. 343–346, 2007. Search in Google Scholar

S. Ikezawa, M. Wakamatsu, J. Pawlat, and T. Ueda, “Sensing technique using laser-induced breakdown spectroscopy integrated with microdroplet ejection system,” Sensors and Transducers Journal, vol. 90, Special Issue on Modern Sensing Technologies, S. C. Mukhopadhyay and G. S. Gupta, Eds. International Frequency Sensor Association Publishing, pp. 284–293, 2008. Search in Google Scholar

S. Ikezawa, M. Wakamatsu, J. Pawlat, and T. Ueda, “Improvement of a micro-droplet guiding technique for laser-induced breakdown spectroscopy”, IEEJ Transactions on Sensors and Micromachines, vol. 128, No. 7, pp. 297–301, 2008. Search in Google Scholar

S. Ikezawa, M. Wakamatsu, J. Pawlat, and T. Ueda, “Control of a microdroplet for laser-induced breakdown spectroscopy solution measurement”, Solid State Phenomena, vol. 147–149, Mechatronic Systems and Materials III, pp. 639–644, 2009. Search in Google Scholar

S. Ikezawa, M. Wakamatsu, and T. Ueda, “Detection of cesium from pollucite using laser-induced breakdown spectroscopy”, Solid State Phenomena, vol. 199, Mechatronic Systems and Materials V, pp. 285– 290, 2013. Search in Google Scholar

S. Ikezawa, T. Ueda, A. Mason, O. Korostynska, and A. I. Al-Shamma’a, “Basic research on an environmental monitoring system for assaying cesium and barium using laser-induced breakdown spectroscopy”, Proceedings of the 2013 Seventh International Conference on Sensing Technology, pp. 712–717, 2013. Search in Google Scholar

D. Kossakovski and J. L. Beauchamp, “Topographical and chemical microanalysis of surfaces with a scanning probe microscope and laser-induced breakdown spectroscopy”, Anal. Chem., 72 (19), pp. 4731–4737, 2000. Search in Google Scholar

C. Geertsen, J.-L. Lacour, P. Mauchien, and L. Pierrard, “Evaluation of laser ablation optical emission spectrometry for microanalysis in aluminium samples”, Spectrochim. Acta Part B, vol. 51, Issue 11, , pp. 1403–1416, September 1996. Search in Google Scholar

Nina L. Lanza et al., “Calibrating the ChemCam laser-induced breakdown spectroscopy instrument for carbonate minerals on Mars”, Appl. Opt., vol. 49, Issue 13, pp. C211–C217, 2010. Search in Google Scholar

C. Dufour et al., “Determination of the first level image processing of the chemcam rmi instrument for the Mars Science Laboratory (MSL) rover”, ICSO 2010, Int. Conf. Space Opt., 2010. Search in Google Scholar

N. Le Roch et al., , “ChemCam on the next NASA mission to Mars (MSL-2011): Measured Performances of the high power libs laser beam”, Int. Conf. Space Opt., 2010. Search in Google Scholar

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