Intensity
Nanosecond and femtosecond laser ablation of brass: Particulate and ICPMS measurements." Analytical Chemistry 76 (2004) 379–383.
, , , , , and . "Influence of gas environment on picosecond laser ablation sampling efficiency and ICP conditions." Analytical Chemistry 70 (1998) 4709–4716.
, , , and . "Effects of particle size distribution on inductively coupled plasma mass spectrometry signal intensity during laser ablation of glass samples." Analytical Chemistry 71.22 (1999) 5123–5130.
, , , , and . "Correlation of Spectral Emission Intensity in the Inductively-Coupled Plasma and Laser-Induced Plasma During Laser-Ablation of Solid Samples." Analytical Chemistry 67 (1995) 2444–2450.
, , , , and . "Optical emission spectroscopy studies of the influence of laser ablated mass on dry inductively coupled plasma conditions." Spectrochimica Acta Part B-Atomic Spectroscopy 53 (1998) 463–470.
, , , and . "Comparison of matrix effects in inductively coupled plasma using laser ablation and solution nebulization for dry and wet plasma conditions." Spectrochimica Acta Part B-Atomic Spectroscopy 56 (2001) 1375–1386.
, , , and . "Differential Vaporization During Laser Ablation Deposition of Bi-Sr-Ca-Cu-O Superconducting Materials." Applied Spectroscopy 46.6 (1992) 1025–1031.
, , and . "Investigation of matrix effects in inductively coupled plasma-atomic emission spectroscopy using laser ablation and solution nebulization - effect of second ionization potential." Spectrochimica Acta Part B-Atomic Spectroscopy 56 (2001) 77–92.
, , , and . "Inductively coupled plasma mass spectrometric study of non-linear calibration behavior during laser ablation of binary Cu-Zn Alloys." Spectrochimica Acta Part B-Atomic Spectroscopy 54 (1999) 1351–1365.
, , , , and . "Effects of crater development on fractionation and signal intensity during laser ablation inductively coupled plasma mass spectrometry." Spectrochim.Acta Pt.B-At.Spec. 55 (2000) 1693–1704.
, , and . "Pagination
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