Kurniawan H, Nakajima S, Batubara J E, et al. Laser-induced shock wave plasma in glass and its application to elemental analysis [J]. Appl. Spectrosc. , 1995,49 ( 8 ) : 1067-1072.
[3]
Yamamoto K Y, Cremers D A, Ferris M J, et al. Detection of metals in the environment using a portable laser-induced breakdown spectroscopy instrument [J]. Appl. Spectrosc. , 1996,50(2) :222-233.
[4]
Knight A K, Scherbarth N L, Cremers David A, et al. Characterization of laser-induced breakdown spectroscopy (LIBS) for application to space exploration [J]. Appl. Speetrosc. , 2000,54 ( 3 ) : 331 -340.
[5]
Salle B, Lacour J L, Mauchien P, et al. Comparative study of different methodologies for quantitative rock analysis by laser-induced breakdown spectroscopy in a simulated martian atmosphere [J]. Spectrochim. Acta Part B, 2006,61 : 301-313.
[6]
Cremers D A, Sevostiyanova E V, Gibson L, et al. LIBS analysis of geological sample at low pressures: application to Mars, the moon, and asteroids [C]. Lunar Planet. Sci. , 2004, ⅩⅩⅩⅤ, 1589.
[7]
Harris R D, Cremers D A, Khoo C, et al. LIBS-based detection of geological samples at low pressures ( < 0. 0001 TORR) for moon and asteroid exploration[C]. Lunar Planet. Sci., 2005, ⅩⅩⅩⅥ, 1796.
[8]
Margetic V, Pakulevl A, Stockhaus A, et al. A comparison of nanosecond and femtosecond laser-induced plasma spectroscopy of brass samples [J]. Spectrochim. Acta Part B, 2000,55 : 1771-1785.