Zhao G C, Sun M, Wilde S A, et al. Late Archean to Paleoproterozoic evolution of the North China Craton: key issues revisited[J}. Precambrian Research, 2005,136:177-202.
[2]
Guan H, Sun M, Wilde S A, et al. SHRIMP U-Pb zircon geochronology of the Fuping Complex: implications for formation and assembly of the North China Craton[J]. Precambrian Res., 2002,113:1-18.
[3]
Wilde S A, Cawood P A, Wang K Y, et al. SHRIMP U-Pb zircon dating of granites and gneisses in the Taihangshan-Wutaishan area: implications for the timing of crustal growth in the North China craton[J]. Chinese Science Bulletin,1998,43:144-145.
[4]
Wilde S A, Zhao G C, Sun M. Development of the North China Craton during the Late Archaean and its amalgamation along a major 1.8 Ga collision zone, including speculations on its position within a global Paleoproterozoic Supercontinent[J]. Gondwana Research, 2002, 5:85-94.
[5]
Kroner A, Wilde S A, Li J H, et al. Age and evolution of a late Archaean to early Palaeozoic upper to lower crustal section in the Wutaishan/ Hengshan/Fuping terrain of northern China [J]. Journal of Asian Earth Sciences, 2005, 24:577-595.
[6]
耿元生 李惠民.吕梁地区早前寒武纪主要地质事件的年代框架[J].地质学报,:.
[7]
Liu S W, Wilde S A, Zhao G C, et al. Granitoids in the Liiliang Precambrian Complex in the Trans-North China Orogen, the North China Craton: their SHRIMP zircon ages,petrogenesis and tectonic implications[J]. Journal of American Science, 2007, in press.
Anderson T. Correlation of common lead in U-Pb analyses that do not report ^204Pb[J]. Chemical geology, 2002, 192:59-79.
[10]
Liu S W, Zhao G C, Wilde S A, et al. Th-U-Pb monazite geochronology of the Luliang and Wutai Complexes: constraints on the tectonothermal evolution of the Tram-North China Orogen[J]. Precambrian Res., 2006, 148(3/4):205-224.
[11]
Zhu X K, O\\'Nions R K. Zonation of monazite in metamorphic rocks and its implications for high temperature thermochronology: a case study from the Lewisian terrain[J]. Earth and Planetary of Science Letters, 1999,171:209-220.
[12]
Foster G, Gibson H D, Parrish R, et al. Textural, chemical and isotopic insights into the nature and behaviour of metamorphic monazite[J]. Chemical Geology, 2002,191 : 183-207.
[13]
Cocherie A, Legendre O, Peucat J J. Geochronology of polygenetic monazites constrained by in situ electron microprobe Th-U total lead determination: Implications for lead behaviour in monazite[J]. Geochimica et Cosmochimica Acta, 1998, 62: 2475 -2497.
[14]
Williams M, Jercinovic M, Terry M. Age mapping and dating of monazite on the electron microprobe: Deconvoluting multistage tectonic histories[J]. Geology, 1999, 27 : 1023-1026.
Zhao G C, Wilde S A, Cawood P A, et al. Archean blocks and their boundaries in the North China Craton: lithological, geochemical, structural and P-T path constraints and tectonic evolution[J]. Precambrian Res., 2001, 107:45-73.
[25]
Zhao G C, Wilde S A, Cawood P A, et al. SHRIMP U-Pb zircon ages of the Fuping Complex: Implications for Late Archean to Paleoproterozoic accretion and assembly of the North China Craton[J].Am. J. Sci., 2002,302:191-226.
[26]
Liu S W, Tian W, Liu C H, et al. Geochemistry, Nd isotopic characteristics of metamorphic complexes in North Hebei: Implications for crustal accretion[J]. Acta Geologica Sinica, 2006,80(6):807-818.
Yuan H L, Gao S, Liu X M, et al. Accurate U-Pb age and trace elements deterrninations of zircon by laser abhtion-induc tively coupled plasma mass spectrometry[J]. Geostand. Newsl.,2004,28:353-370.