Geophysical and isotopic mapping of preexisting crustal structures that influenced the location and development of the San Jacinto fault zone, southern California

被引:39
作者
Langenheim, VE
Jachens, RC
Morton, DM
Kistler, RW
Matti, JC
机构
[1] US Geol Survey, Menlo Pk, CA 94025 USA
[2] Univ Calif Riverside, US Geol Survey, Riverside, CA 92521 USA
[3] US Geol Survey, Tucson, AZ 85719 USA
关键词
gravity; magnetics; initial strontium data; fault evolution; crustal structure;
D O I
10.1130/B25277.1
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
We examine the role of preexisting crustal structure within the Peninsular Ranges batholith on determining the location of the San Jacinto fault zone by analysis of geophysical anomalies and initial strontium ratio data. A 1000-km-long boundary within the Peninsular Ranges batholith, separating relatively mafic, dense, and magnetic rocks of the western Peninsular Ranges batholith from the more felsic, less dense, and weakly magnetic rocks of the eastern Peninsular Ranges batholith, strikes north-northwest toward the San Jacinto fault zone. Modeling of the gravity and magnetic field anomalies caused by this boundary, indicates that it extends to depths of at least 20 km. The anomalies do not cross the San Jacinto fault zone, but instead trend northwesterly and coincide with the fault zone. A 75-km-long gradient in initial strontium ratios (Sr-i) in the eastern Peninsular Ranges batholith coincides with the San Jacinto fault zone. Here rocks east of the fault are characterized by Sr-i greater than 0.706, indicating a source of largely continental crust, sedimentary materials, or different lithosphere. We argue that the physical property contrast produced by the Peninsular Ranges batholith boundary provided a mechanically favorable path for the San Jacinto fault zone, bypassing the San Gorgonio structural knot as slip was transferred from the San Andreas fault 1.0-1.5 Ma. Two historical M6.7 earthquakes may have nucleated along the Peninsular Ranges batholith discontinuity in San Jacinto Valley, suggesting that Peninsular Ranges batholith crustal structure may continue to affect how strain is accommodated along the San Jacinto fault zone.
引用
收藏
页码:1143 / 1157
页数:15
相关论文
共 74 条
[1]   TILT AND NORTHWARD OFFSET OF CORDILLERAN BATHOLITHS RESOLVED USING IGNEOUS BAROMETRY [J].
AGUE, JJ ;
BRANDON, MT .
NATURE, 1992, 360 (6400) :146-149
[2]   Structural model of the San Bernardino basin, California, from analysis of gravity, aeromagnetic, and seismicity data [J].
Anderson, M ;
Matti, J ;
Jachens, R .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 2004, 109 (B4) :B044041-20
[3]  
[Anonymous], 96682 US GEOL SURV
[4]  
[Anonymous], 90404 US GEOL SURV
[5]  
BAIRD AK, 1979, MESOZOIC CRYSTALLINE, P111
[6]  
Baranov W., 1957, GEOPHYSICS, V22, P359, DOI DOI 10.1190/1.1438369
[7]  
BARD AK, 1984, 1284 US GEOL SURV
[8]  
Biehler S., 1992, 92279 US GEOL SURV
[9]   Gravity anomalies, quaternary vents, and quaternary faults in the southern Cascade Range, Oregon and California: Implications for arc and backarc evolution [J].
Blakely, RJ ;
Christiansen, RL ;
Guffanti, M ;
Wells, RE ;
DonnellyNolan, JM ;
Muffler, LJP ;
Clynne, MA ;
Smith, JG .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 1997, 102 (B10) :22513-22527
[10]   APPROXIMATING EDGES OF SOURCE BODIES FROM MAGNETIC OR GRAVITY-ANOMALIES [J].
BLAKELY, RJ ;
SIMPSON, RW .
GEOPHYSICS, 1986, 51 (07) :1494-1498