Satake, K - OpenSeismo

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Masataka ANDO
SEISMO-TECTONICS OF THE 1923 KANTO EARTHQUAKE
Journal of Physics of the Earth, Vol.22, No.2, (1974), pp.263-277
Mai, P. M., and G. C. Beroza (2000). Source scaling properties from finite-fault-rupture
models, Bull. Seismol. Soc. Am. 90, 604-615.
J. E. EBEL, L. J. BURDICK, and G. S. STEWART
The source mechanism of the August 7, 1966 El Golfo earthquake
Bulletin of the Seismological Society of America, October 1, 1978; 68(5): 1281 - 1292.
B. R. WILLIAMS
Mo calculations from a generalized AR parameter method for WWSSN instruments
Bulletin of the Seismological Society of America, April 1, 1979; 69(2): 329 - 351.
S. HARTZELL
Faulting process of the May 17, 1976 Gazli, USSR earthquake
Bulletin of the Seismological Society of America, October 1, 1980; 70(5): 1715 - 1736.
H.-L. LIU and H. KANAMORI
Determination of source parameters of mid-plate earthquakes from the waveforms of body waves
Bulletin of the Seismological Society of America, December 1, 1980; 70(6): 1989 - 2004.
J. CIPAR
Broadband time domain modeling of earthquakes from Friuli, Italy
Bulletin of the Seismological Society of America, August 1, 1981; 71(4): 1215 - 1231.
M. S. VASSILIOU and H. KANAMORI
The energy release in earthquakes
Bulletin of the Seismological Society of America, April 1, 1982; 72(2): 371 - 387.
O. W. NUTTLI
Average seismic source-parameter relations for mid-plate earthquakes
Bulletin of the Seismological Society of America, April 1, 1983; 73(2): 519 - 535.
I. NAKANISHI and H. KANAMORI
Source mechanisms of twenty-six large, shallow earthquake (MS greater double equals 6.5)
during 1980 from P-wave first motion and long-period Rayleigh wave data
Bulletin of the Seismological Society of America, June 1, 1984; 74(3): 805 - 818.
E. FUKUYAMA and K. IRIKURA
Rupture process of the 1983 Japan Sea (Akita-Oki) earthquake using a waveform inversion
method
Bulletin of the Seismological Society of America, December 1, 1986; 76(6): 1623 - 1640.
W.-Y. CHUNG and B. J. BRANTLEY
The 1984 southern Yellow Sea earthquake of Eastern China: Source properties and
seismotectonic implications for a stable continental area
Bulletin of the Seismological Society of America, December 1, 1989; 79(6): 1863 - 1882.
C. H. ESTABROOK and T. M. BOYD
The Shumagin Islands, Alaska, earthquake of 31 May 1917
Bulletin of the Seismological Society of America, April 1, 1992; 82(2): 755 - 773.
C. J. Langer and W. Spence
The 1974 Peru earthquake series
Bulletin of the Seismological Society of America, June 1, 1995; 85(3): 665 - 687.
A. L. Bent
Source parameters of the damaging Cornwall-Massena earthquake of 1944 from regional
waveforms
Bulletin of the Seismological Society of America, April 1, 1996; 86(2): 489 - 497.
??
Yan Y. Kagan
Aftershock Zone Scaling
Bulletin of the Seismological Society of America, March 1, 2002; 92(2): 641 - 655.
??
Luis Rivera, Kerry Sieh, Don Helmberger, and Danny Natawidjaja
A Comparative Study of the Sumatran Subduction-Zone Earthquakes of 1935 and 1984
Bulletin of the Seismological Society of America, June 1, 2002; 92(5): 1721 - 1736.
??
Nicholas Ambraseys and Roger Bilham
Earthquakes and Associated Deformation in Northern Baluchistan 1892-2001
Bulletin of the Seismological Society of America, August 1, 2003; 93(4): 1573 - 1605.
??? E. A. Okal and J. R. Sweet
Frequency-size distributions for intraplate earthquakes
Geological Society of America Special Papers, January 1, 2007; 425(0): 59 - 71.
??? E. A. OKAL and C. J. HARTNADY
THE SOUTH SANDWICH ISLANDS EARTHQUAKE OF 27 JUNE 1929: SEISMOLOGICAL
STUDY AND INFERENCE ON TSUNAMI RISK FOR THE SOUTH ATLANTIC
South African Journal of Geology, December 1, 2009; 112(3-4): 359 - 370.
M. Leonard
Earthquake Fault Scaling: Self-Consistent Relating of Rupture Length, Width, Average
Displacement, and Moment Release
Bulletin of the Seismological Society of America, October 1, 2010; 100(5A): 1971 - 1988.
L. Blaser, F. Kruger, M. Ohrnberger, and F. Scherbaum
Scaling Relations of Earthquake Source Parameter Estimates with Special Focus on Subduction
Environment
Bulletin of the Seismological Society of America, December 1, 2010; 100(6): 2914 - 2926.
ROBERT J. GELLER
Scaling relations for earthquake source parameters and magnitudes
Bulletin of the Seismological Society of America, Oct 1976; 66: 1501 - 1523.
R. C. QUITTMEYER and K. H. JACOB
Historical and modern seismicity of Pakistan, Afghanistan, northwestern India, and southeastern
Iran
Bulletin of the Seismological Society of America, June 1, 1979; 69(3): 773 - 823.
H. K. ACHARYA
Regional variations in the rupture-length magnitude relationships and their dynamical significance
Bulletin of the Seismological Society of America, December 1, 1979; 69(6): 2063 - 2084.
S. K. SINGH and J. HAVSKOV
On moment-magnitude scale
Bulletin of the Seismological Society of America, February 1, 1980; 70(1): 379 - 383.
S. K. SINGH, E. BAZAN, and L. ESTEVA
Expected earthquake magnitude from a fault
Bulletin of the Seismological Society of America, June 1, 1980; 70(3): 903 - 914.
S. K. SINGH, L. ASTIZ, and J. HAVSKOV
Seismic gaps and recurrence periods of large earthquakes along the Mexican subduction zone: A
reexamination
Bulletin of the Seismological Society of America, June 1, 1981; 71(3): 827 - 843.
H. KANAMORI and K. C. MCNALLY
Variable rupture mode of the subduction zone along the Ecuador-Colombia coast
Bulletin of the Seismological Society of America, August 1, 1982; 72(4): 1241 - 1253.
L. ASTIZ, H. KANAMORI, and H. EISSLER
Source characteristics of earthquakes in the Michoacan seismic gap in Mexico
Bulletin of the Seismological Society of America, August 1, 1987; 77(4): 1326 - 1346.
D. V. HELMBERGER, P. G. SOMERVILLE, and E. GARNERO
The location and source parameters of the Lompoc, California, earthquake of 4 November 1927
Bulletin of the Seismological Society of America, August 1, 1992; 82(4): 1678 - 1709.
A. L. BENT
A re-examination of the 1925 Charlevoix, Quebec, earthquake
Bulletin of the Seismological Society of America, October 1, 1992; 82(5): 2097 - 2113.
J. F. CASSIDY and A. L. BENT
Source parameters of the 29 May and 5 June, 1940 Richardson Mountains, Yukon Territory,
earthquakes
Bulletin of the Seismological Society of America, June 1, 1993; 83(3): 636 - 659.
??
S. K. Singh, W. K. Mohanty, B. K. Bansal, and G. S. Roonwal
Ground Motion in Delhi from Future Large/Great Earthquakes in the Central Seismic Gap of the
Himalayan Arc
Bulletin of the Seismological Society of America, March 1, 2002; 92(2): 555 - 569.
ROBERT J. GELLER and HIROO KANAMORI
Magnitudes of great shallow earthquakes from 1904 to 1952
Bulletin of the Seismological Society of America; June 1977; v. 67; no. 3; p. 587-598
ROBERT J. GELLER, HIROO KANAMORI, and KATSUYUKI ABE
Addenda and corrections to "Magnitude of great shallow earthquakes from 1904 to 1952"
Bulletin of the Seismological Society of America, Dec 1978; 68: 1763 - 1764.
Satake, K. (1993), Depth Distribution of Coseismic Slip Along the Nankai Trough, Japan, From
Joint Inversion of Geodetic and Tsunami Data, J. Geophys. Res., 98(B3), 4553–4565.
Sykes, L. R. (1971), Aftershock Zones of Great Earthquakes, Seismicity Gaps, and Earthquake
Prediction for Alaska and the Aleutians, J. Geophys. Res., 76(32), 8021–8041.
Pelayo, A. M., and D. A. Wiens (1992), Tsunami Earthquakes: Slow Thrust-Faulting Events in the
Accretionary Wedge, J. Geophys. Res., 97(B11), 15, 321–15, 337.
Johnson, J. M., K. Satake, S. R. Holdahl, and J. Sauber (1996), The 1964 Prince William Sound
earthquake: Joint inversion of tsunami and geodetic data, J. Geophys. Res., 101(B1), 523–532.
Satake, K. (1989), Inversion of Tsunami Waveforms for the Estimation of Heterogeneous Fault
Motion of Large Submarine Earthquakes: The 1968 Tokachi-oki and 1983 Japan Sea
Earthquakes, J. Geophys. Res., 94(B5), 5627–5636.
Savage, J. C., and L. M. Hastie (1966), Surface Deformation Associated with Dip-Slip Faulting, J.
Geophys. Res., 71(20), 4897–4904.
Wu, F. T., and H. Kanamori (1973), Source Mechanism of February 4, 1965, Rat Island
Earthquake, J. Geophys. Res., 78(26), 6082–6092.
Ben-Menahem, A., and M. Rosenman (1972), Amplitude Patterns of Tsunami Waves from
Submarine Earthquakes, J. Geophys. Res., 77(17), 3097–3128.
Nelson, M. R., R. McCaffrey, and P. Molnar (1987), SOURCE PARAMETERS FOR 11
EARTHQUAKES IN THE TIEN SHAN, CENTRAL ASIA, DETERMINED BY P AND SH
WAVEFORM INVERSION, J. Geophys. Res., 92(B12), 12, 629–12, 648.
Source mechanisms of the Mogod earthquake sequence of 1967 and the event of 1974
July 4 in Mongolia
Jie Huang,†, Wang-Ping Chen
Geophysical Journal of the Royal Astronomical Society
Volume 84, Issue 2, pages 361–379, February 1986
Okal, E. A., 1977. The July 9 and 23, 1906, Mongolian earthquakes: a surface wave investigation,
Earth planet. Sci. Lett., 34, 326–331.
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Beck, S. L., and D. H. Christensen (1991). Rupture Process of the February 4, 1965, Rat Islands
Earthquake, J. Geophys. Res., 96(B2), 2205–2221.
Doser, D. I. (1991a). Faulting within the western Baikal rift as characterized by earthquake
studies, Tectonophys., 196, 87-107.
Doser, D. I. (1991b). Faulting within the eastern Baikal rift as characterized by earthquake
studies, Tectonophys., 196, 109-139.
Ohnaka, M. (1978). Earthquake-source parameters related to magnitude. Geophys. J. Roy.
Astron. Soc., 55, 45–66.
References from Braser et al. (2010)
Ammon, C. J., H. Kanamori, and T. Lay (2008). A great earthquake doublet and seismic
stress transfer cycle in the central Kuril islands, Nature 451, 561-565,
U4.[CrossRef][Web of Science][Medline]
Antonioli, A., M. Cocco, S. Das, and C. Henry (2002). Dynamic stress triggering during
the great 25 March 1998 Antarctic plate earthquake, Bull. Seismol. Soc. Am. 92, 896903.[Abstract/Free Full Text]
Aoi, S., H. Sekiguchi, N. Morikawa, and T. Kunugi (2008). Source process of the 2007
Niigata-Ken Chuetsu-Oki earthquake derived from near-fault strong motion data, Earth
Planets Space 60, 1131-1135.
Beresnev, I. A. (2003). Uncertainties in finite-fault slip inversions: To what extent to
believe? (a critical review), Bull. Seismol. Soc. Am. 93, 24452458.[Abstract/Free Full Text]
Bilek, S. L., and T. Lay (1999). Rigidity variations with depth along interplate
megathrust faults in subduction zones, Nature 400, 443-446.[CrossRef][GeoRef]
Briggs, R. W., K. Sieh, A. J. Meltzner, D. Natawidjaja, J. Galetzka, B. Suwargadi, Y. J.
Hsu, M. Simons, N. Hananto, I. Suprihanto, D. Prayudi, J. P. Avouac, L. Prawirodirdjo,
and Y. Bock (2006). Deformation and slip along the Sunda megathrust in the great 2005
Nias-Simeulue earthquake, Science 311, 1897-1901.[Abstract/Free Full Text]
Burchfiel, B., L. Royden, R. van der Hilst, B. Hager, Z. Chen, R. King, C. Li, J. Lü, H.
Yao, and E. Kirby (2008). A geological and geophysical context for the Wenchuan
earthquake of 12 May 2008, Sichuan, People’s Republic of China, GSA Today 18, 411.[GeoRef]
Carlo, D. L., T. Lay, C. J. Ammon, and J. J. Zhang (1999). Rupture process of the 1995
Antofagasta subduction earthquake (M-w=8.1), Pure Appl. Geophys. 154, 677708.[CrossRef]
Catherine, J. K., V. K. Gahalaut, and V. K. Sahu (2005). Constraints on rupture of the
December 26, 2004, Sumatra earthquake from far-field GPS observations, Earth Planet
Sci. Lett. 237, 673-679.[CrossRef]
Delouis, B., D. Giardini, P. Lundgren, and J. Salichon (2002). Joint inversion of INSAR,
GPS, teleseismic, and strong-motion data for the spatial and temporal distribution of
earthquake slip: Application to the 1999 Izmit mainshock, Bull. Seismol. Soc. Am. 92,
278-299.[Abstract/Free Full Text]
Geli, L., and J. Sclater (2008). On the depth of oceanic earthquakes: Brief comments on
"the thermal structure of oceanic and continental lithosphere," by McKenzie, D.; Jackson,
J.; and Priestley, K., Earth Planet. Sci. Lett., 233, [2005], 337-349, Earth Planet. Sci.
Lett. 265, 769-775.
Geller, R. J. (1976). Scaling relations for earthquake source parameters and magnitudes,
Bull. Seismol. Soc. Am. 66, 1501-1523.[Abstract/Free Full Text]
Hanks, T. C., and W. H. Bakun (2002). A bilinear source-scaling model for M-log a
observations of continental earthquakes, Bull. Seismol. Soc. Am. 92, 18411846.[Abstract/Free Full Text]
Hanks, T. C., and W. H. Bakun (2008). M-log a observations for recent large
earthquakes, Bull. Seismol. Soc. Am. 98, 490-494.[Abstract/Free Full Text]
Hanks, T. C., and H. Kanamori (1979). Moment magnitude scale, J. Geophys. Res. 84,
2348-2350.[CrossRef]
Huang, Y., J. Wu, T. Zhang, and D. Zhang (2008). Relocation of the M 8.0 Wenchuan
earthquake and its aftershock sequence, Sci. China Earth Sci. 51, 1703-1711.[CrossRef]
Johnson, J. M., Y. Tanioka, L. J. Ruff, K. Satake, H. Kanamori, and L. R. Sykes (1994).
The 1957 great Aleutian earthquake, Pure Appl. Geophys. 142, 3-28.
Johnson, K. M., Y. J. Hsu, P. Segall, and S. B. Yu (2001). Fault geometry and slip
distribution of the 1999 Chi-Chi, Taiwan earthquake imaged from inversion of GPS data,
Geophys. Res. Lett. 28, 2285-2288.[CrossRef][Web of Science][GeoRef]
Kanamori, H. (1972). Mechanisms of tsunami earthquakes, Phys. Earth Planet. Int. 6,
246-259.
Kanamori, H. (2008). Earthquake physics and real-time seismology, Nature 451, 271273.[CrossRef][Web of Science][Medline]
Kanamori, H., and D. L. Anderson (1975). Theoretical basis of some empirical relations
in seismology, Bull. Seismol. Soc. Am. 65, 1073-1095.[Abstract/Free Full Text]
Klinger, Y., X. W. Xu, P. Tapponnier, J. Van der Woerd, C. Lasserre, and G. King
(2005). High-resolution satellite imagery mapping of the surface rupture and slip
distribution of the M-w similar to 7.8, 14 November 2001 Kokoxili earthquake, Kunlun
fault, northern Tibet, China, Bull. Seismol. Soc. Am. 95, 19701987.[Abstract/Free Full Text]
Konstantinou, K. I., G. A. Papadopoulos, A. Fokaefs, and K. Orphanogiannaki (2005).
Empirical relationships between aftershock area dimensions and magnitude for
earthquakes in the Mediterranean sea region, Tectonophysics 403, 95115.[CrossRef][Web of Science][GeoRef]
Lay, T., H. Kanamori, C. J. Ammon, M. Nettles, S. N. Ward, R. C. Aster, S. L. Beck, S.
L. Bilek, M. Brudzinski, R. Butler, H. R. DeShon, G. Ekström, K. Satake, and S. Sipkin
(2005). The great Sumatra–Andaman earthquake of 26 December 2004, Science 308,
1127-1133.[Abstract/Free Full Text]
Lay, T., H. Kanamori, C. J. Ammon, A. R. Hutko, K. Furlong, and L. Rivera (2009). The
2006–2007 Kuril islands great earthquake sequence, J. Geophys. Res. 114.
Li, H. B., J. Van der Woerd, P. Tapponnier, Y. Klinger, X. X. Qi, J. S. Yang, and Y. T.
Zhu (2005). Slip rate on the Kunlun fault at Hongshui Gou, and recurrence time of great
events comparable to the 14/11/2001, Mw similar to 7.9 Kokoxili earthquake, Earth
Planet. Sci. Lett. 237, 285-299.[CrossRef]
Lin, A. M., B. H. Fu, J. M. Guo, Q. L. Zeng, G. M. Dang, W. G. He, and Y. Zhao (2002).
Co-seismic strike-stip and rupture length produced by the 2001 M-s 8.1 central Kunlun
earthquake, Science 296, 2015-2017.[Abstract/Free Full Text]
Lynnes, C. S., and T. Lay (1988). Source process of the great 1977 Sumba earthquake, J.
Geophys. Res. 93, 13,407-13,420.
Mai, P. M., and G. C. Beroza (2000). Source scaling properties from finite-fault-rupture
models, Bull. Seismol. Soc. Am. 90, 604-615.[Abstract/Free Full Text]
McGinty, P., and R. Robinson (2007). The 2003 M-w 7.2 Fiordland subduction
earthquake, New Zealand: Aftershock distribution, main shock fault plane and static
stress changes on the overlying Alpine fault, Geophys. J. Int. 169, 579-592.[CrossRef]
McKenzie, D., J. Jackson, and K. Priestley (2005). Thermal structure of oceanic and
continental lithosphere, Earth Planet. Sci. Lett. 233, 337-349.[CrossRef]
Murotani, S., H. Miyake, and K. Koketsu (2008). Scaling of characterized slip models for
plate-boundary earthquakes, Earth Planets Space 60, 987-991.
Okal, E. A., and C. E. Synolakis (2008). Far-field tsunami hazard from mega-thrust
earthquakes in the Indian ocean, Geophys. J. Int. 172, 995-1015.[CrossRef]
Ozacar, A. A., and S. L. Beck (2004). The 2002 Denali fault and 2001 Kunlun fault
earthquakes: Complex rupture processes of two large strike-slip events, Bull. Seismol.
Soc. Am. 94, S278-S292.
Petersen, T., J. Ristau, J. Beavan, P. Denys, M. Denham, B. Field, C. François-Holden, R.
McCaffrey, N. Palmer, M. Reyners, S. Samsonov, and the GeoNet Team (2009). The
Mw 6.7 George Sound earthquake of October 15, 2007: response and preliminary results,
Bull. New Zeal. Soc. Earthq. Eng. 42, 129-141.
Robinson, R., T. Webb, P. McGinty, J. Cousins, and D. Eberhart-Phillips (2003). The
2000 Thompson Sound earthquake, New Zealand, New Zeal J. Geol. Geophys. 46, 331341.[CrossRef]
Romanowicz, B. (1992). Strike-slip earthquakes on quasi-vertical transcurrent faults—
inferences for general scaling relations, Geophys. Res. Lett. 19, 481-484.[Web of
Science][GeoRef]
Romanowicz, B. (1994). A reappraisal of large earthquake scaling—comment, Bull.
Seismol. Soc. Am. 84, 1675-1676.[Free Full Text]
Satake, K., and Y. Tanioka (1999). Sources of tsunami and tsunamigenic earthquakes in
subduction zones, Pure Appl. Geophys. 154, 467-483.[CrossRef]
Scholz, C. H. (1982). Scaling laws for large earthquakes—consequences for physical
models, Bull. Seismol. Soc. Am. 72, 1-14.[Abstract/Free Full Text]
Scholz, C. H. (1994). A reappraisal of large earthquake scaling, Bull. Seismol. Soc. Am.
84, 215-218.[Abstract/Free Full Text]
Scholz, C. H. (1997). Size distributions for large and small earthquakes, Bull. Seismol.
Soc. Am. 87, 1074-1077.[Abstract/Free Full Text]
Shabestari, K. T., F. Yamazaki, J. Saita, and M. Matsuoka (2004). Estimation of the
spatial distribution of ground motion parameters for two recent earthquakes in Japan,
Tectonophysics 390, 193-204.[CrossRef][Web of Science][GeoRef]
Shaw, B., N. N. Ambraseys, P. C. England, M. A. Floyd, G. J. Gorman, T. F. G. Higham,
J. A. Jackson, J.-M. Nocquet, C. C. Pain, and M. D. Piggott (2008). Eastern
Mediterranean tectonics and tsunami hazard inferred from the AD 365 earthquake, Nat.
Geosci. 1, 268-276.[CrossRef][Web of Science]
Somerville, P., K. Irikura, R. Graves, S. Sawada, D. Wald, N. Abrahamson, Y. Iwasaki,
T. Kawaga, N. Smith, and A. Kowada (1999). Characterizing crustal earthquake slip
model for the prediction of strong ground motion, Seismol. Res. Lett. 70, 59-80.
Stramondo, S., M. Moro, C. Tolomei, F. R. Cinti, and F. Doumaz (2005). INSAR surface
displacement field and fault modelling for the 2003 Barn earthquake (southeastern Iran),
J. Geodyn. 40, 347-353.[CrossRef]
Strasser, F.O., M.C. Arango, and J.J. Bommer(2010). Scaling of the source dimensions of
interface and intraslab subduction-zone earthquakes with moment magnitude, Seismol.
Res. Lett. 81, no. 6 (in press).
Tatar, M., D. Hatzfeld, A. S. Moradi, and A. Paul (2005). The 2003 December 26 Bam
earthquake (Iran), Mw 6.6, aftershock sequence, Geophys. J. Int. 163, 90-105.[CrossRef]
Umutlu, N., K. Koketsu, and C. Milkereit (2004). The rupture process during the 1999
Duzce, Turkey, earthquake from joint inversion of teleseismic and strong-motion data,
Tectonophysics 391, 315-324.[CrossRef][Web of Science][GeoRef]
Wang, J. H., and S. S. Ou (1998). On scaling of earthquake faults, Bull. Seismol. Soc. Am.
88, 758-766.[Abstract/Free Full Text]
Wells, D. L., and K. J. Coppersmith (1994). New empirical relationships among
magnitude, rupture length, rupture width, rupture area, and surface displacement, Bull.
Seismol. Soc. Am. 84, 974-1002.[Abstract/Free Full Text]
Yamanaka, Y., and M. Kikuchi (2003). Source process of the recurrent Tokachi-Oki
earthquake on September 26, 2003, inferred from teleseismic body waves, Earth Planets
Space 55, E21-E24.
Yu, S.-B., L.-C. Kuo, Y.-J. Hsu, H.-H. Su, C.-C. Liu, C.-S. Hou, J.-F. Lee, T.-C. Lai, C.C. Liu, C.-L. Liu, T.-F. Tseng, C.-S. Tsai, and T.-C. Shin (2001). Preseismic deformation
and coseismic displacements associated with the 1999 Chi-Chi, Taiwan, earthquake, Bull.
Seismol. Soc. Am. 91, 995-1012.[CrossRef][Web of Science]
References from Mai and Beroza (2000)
Aki, K. (1972). Earthquake mechanism, Tectonophysics 13,423 –446.[CrossRef][Web of
Science][GeoRef]
Archuleta, R. J. (1984). A faulting model for the 1979 Imperial Valley earthquake, J.
Geophys. Res. 89,4559 –4585.[CrossRef][Web of Science]
Bennett, R. A., R. E. Reilinger, W. L. Rodi, Y. Li, M. N. Toksoz, and K. W. Hudnut
(1995). Coseismic fault slip associated with the 1992 Mw = 6.1 Joshua Tree, California,
earthquake: implications for the Joshua Tree-Landers earthquake sequence, J. Geophys.
Res. 100,6443 –6461.[CrossRef]
Beroza, G. C. (1991). Near-source modeling of the Loma Prieta earthquake; evidence for
heterogeneous slip and implications for earthquake hazard, Bull. Seism. Soc. Am. 81,1603
–1621.[Abstract/Free Full Text]
Beroza, G. C., and P. Spudich (1988). Linearized inversion for fault rupture behavior;
application to the 1984 Morgan Hill, California, earthquake, J. Geophys. Res. 93,6275 –
6296.
Beroza, G. C., and T. Mikumo (1996). Short slip duration in dynamic rupture in the
presence of heterogeneous fault properties, J. Geophys. Res. 101,22,449 –
22,460.[CrossRef]
Bodin, P., and J. N. Brune (1996). On the scaling of slip with rupture length for shallow
strike-slip earthquakes; quasi-static models and dynamic rupture propagation, Bull.
Seism. Soc. Am. 86,1292 –1299.[Abstract/Free Full Text]
Bouchon, M. (1997). The state of stress on some faults of the San Andreas system as
inferred from near-field strong motion data, J. Geophys. Res. 102,11,731 –
11,744.[CrossRef]
Bouchon, M., M. Campillo, and F. Cotton (1998). Stress field associated with the rupture
of the 1992 Landers, California, earthquake and its implications concerning the fault
strength at the onset of the earthquake, J. Geophys. Res. 103,21 ,091–21,097.
Bracewell, R. N. (1986). The Fourier Transform and Its Applications, McGraw-Hill,
New York.
Brune, J. N., J. B. Fletcher, F. L. Vernon, L. C. Haar, T. C. Hanks, J. Berger, J.
Boatwright, and C. H. Scholz (1986). Low stress-drop earthquakes in the light of new
data from the Anza, California telemetered digital array, in Earthquake Source
Mechanics, S. Das (Editor), American Geophysical Monograph 37,237 –245.
Choy, G. L. and J. Boatwright (1995). Global patterns of radiated seismic energy and
apparent stress, J. Geophys. Res. 100,18,205 –18,226.[CrossRef]
Cohee, B. P., and G. C. Beroza (1992). Slip distribution of the 1992 Landers earthquake
and its implications for earthquake source mechanics, Bull. Seism. Soc. Am. 84,693 –712.
Cotton, F., and M. Campillo (1995). Frequency domain inversion of strong motions;
application to the 1992 Landers earthquake, J. Geophys. Res. 100,3961 –
3975.[CrossRef][Web of Science]
Darragh, R. B., and B. A. Bolt (1987). A comment on the statistical regression relation
between earthquake magnitude and fault rupture length, Bull. Seism. Soc. Am. 77,1479 –
1484.[Free Full Text]
Dreger, D. S. (1994). Empirical Green's function study of the January 17, 1994
Northridge, California earthquake, Geophys. Res. Lett. 21,2633 –2636.[CrossRef]
Fujii, Y. and M. Matsu'ura (1999). Regional differences in scaling laws for large
earthquakes and its tectonic implications, EOS Transactions, American Geophysical
Union 80, no. 46, p.934 .
Hanks, T. C., and H. Kanamori (1979). A moment magnitude scale, J. Geophys. Res.
84,2348 –2350.[CrossRef][Web of Science]
Hartzell, S. H., and T. H. Heaton (1983). Inversion of strong ground motion and
teleseismic waveform data for the fault rupture history of the 1979 Imperial Valley,
California, earthquake, Bull. Seism. Soc. Am. 73,1553 –1583.[Abstract/Free Full Text]
Hartzell, S. H., and T. H. Heaton (1986). Rupture history of the 1984 Morgan Hill,
California, earthquake from the inversion of strong motion records, Bull. Seism. Soc. Am.
76,649 –674.[Abstract/Free Full Text]
Hartzell, S. H. (1989). Comparison of seismic waveform inversion results for the rupture
history of a finite fault; application to the 1986 North Palm Springs, California,
earthquake, J. Geophys. Res. 94,7515 –7534.[CrossRef]
Hartzell, S. H., and M. Iida (1990). Source complexity of the 1987 Whittier Narrows,
California, earthquake from the inversion of strong motion records, J. Geophys. Res.
95,12,475 –12,485.
Hartzell, S. H., and C. Mendoza (1991). Application of an iterative least-squares
waveform inversion of strong motion and teleseismic records to the 1978 Tabas, Iran,
earthquake, Bull. Seism. Soc. Am. 81,305 –331.[Abstract/Free Full Text]
Heaton, T. H. (1982). The 1971 San Fernando earthquake: a double event?, Bull. Seism.
Soc. Am. 72,2037 –2062.[Abstract/Free Full Text]
Heaton, T. H. (1990). Evidence for and implications of self-healing pulses of slip in
earthquake rupture, Phys. Earth Planet. Interiors 64,1 –20.
Hough, S. E., and D. S. Dreger (1995). Source parameters of the 23 April 1992 M 6.1
Joshua Tree, California, earthquake and its aftershocks: empirical Green's function
analysis of GEOS and TERRAscope data, Bull. Seism. Soc. Am. 85,1576 –
1590.[Abstract/Free Full Text]
Hudnut, K. W., Z. Shen, M. Murray, S. McClusky, R. King, T. Herring, B. Hager, Y.
Feng, P. Fang, A. Donnellan, and Y. Block (1996). Coseismic displacements of the 1994
Northridge, California, earthquake, Bull. Seism. Soc. Am. 86,19 –
36.[Abstract/Free Full Text]
Kanamori, H., and D. L. Anderson (1975). Theoretical basis of some empirical relations
in seismology, Bull. Seism. Soc. Am. 65,1073 –1095.[Abstract/Free Full Text]
Kanamori, H. and C. R. Allen (1986). Earthquake repeat times and average stress drop, in
Earthquake Source Mechanics, S. Das (Editor), American Geophysical Monograph
37,227 –236.
Larsen, S., R. Reilinger, H. Neugebauer, and W. Strange (1992). Global Positioning
System measurements of deformations associated with the 1987 Superstition Hills
earthquake; evidence for conjugate faulting, J. Geophys. Res. 97,4885 –4902.[CrossRef]
Liu, H., and D. V. Helmberger (1983). The near-source ground motion of the 6 August
1979 Coyote Lake, California, earthquake, Bull. Seism. Soc. Am. 73,201 –
218.[Abstract/Free Full Text]
Mai, P. M. and G. C. Beroza (1999). Characterization of complex earthquake slip as a
spatial random field, EOS Transactions, American Geophysical Union 80, no. 46, p.707 .
Matsu'ura, M., and T. Sato (1997). Loading mechanism and scaling relations of large
interplate earthquakes, Tectonophysics 277,189 –198.[CrossRef][Web of
Science][GeoRef]
Mendoza, C., and S. H. Hartzell (1988). Inversion for slip distribution using teleseismic P
waveforms: North Palm Springs, Borah Peak, and Michoacan earthquakes, Bull. Seism.
Soc. Am. 78,1092 –1111.[Abstract/Free Full Text]
Mikumo, T., and T. Miyatake (1995). Heterogeneous distribution of dynamic stress drop
and relative fault strength recovered from the results of waveform inversion; the 1984
Morgan Hill, California earthquake, Bull. Seism. Soc. Am. 85,178 –
193.[Abstract/Free Full Text]
Pacheco, J. F., C. H. Scholz, and L. R. Sykes (1992). Changes in frequencysize
relationship from small to large earthquakes, Nature 355,71 –73.
Pérez-Campos, X., and G. C. Beroza (1999). Radiated seismic energy: scaling,
mechanism dependence and the regional-teleseismic discrepancy, EOS Transactions,
American Geophysical Union 80, no. 46, p.738 .
Romanowicz, B. (1992). Strike-slip earthquakes on quasi-vertical transcurrent faults:
inferences for general scaling relations, Geophys. Res. Lett. 19,481 –484.
Scholz, C. H. (1982). Scaling laws for large earthquakes; consequences for physical
models, Bull. Seism. Soc. Am. 72,1 –14.[Abstract/Free Full Text]
Scholz, C. H. (1990). The Mechanics of Earthquakes and Faulting, Cambridge University
Press, New York.
Scholz, C. H. (1994). A reappraisal of large earthquake scaling, Bull. Seism. Soc. Am.
84,215 –218.[Abstract/Free Full Text]
Sekiguchi, H., K. Irikura, T. Iwata, Y. Kakehi, and M. Hoshiba (1996). Determination of
the location of faulting beneath Kobe during the 1995 Hyogo-ken Nanbu, Japan,
earthquake from near-source particle motion, Geophys. Res. Lett. 23,387 –390.[CrossRef]
Somerville, P. G., K. Irikura, R. Graves, S. Sawada, D. J. Wald, N. Abrahmson, Y.
Iwasaki, T. Kagawa, N. Smith, A. Kowada (1999). Characterizing crustal earthquake slip
models for the prediction of strong ground motion, Seism. Res. Lett. 70,59 –80.
Steidl, J. H., and R. J. Archuleta (1989). Are rupture models consistent with geodetic
measurements? (Loma Prieta, California, earthquake of October, 17, 1989), U.S. Geol.
Surv. Prof. Pap. 195–207.
Thatcher, W., G. Marshall and M. Lisowski (1997). Resolution of fault slip along the
470-km-long rupture of the great 1906 San Francisco earthquake and its implications, J.
Geophys. Res. 102,5353 –5367.[CrossRef]
Wald, D. J. (1992). Strong motion and broadband teleseismic analysis of the 1991 Sierra
Madre, California, earthquake, J. Geophys. Res. 97,11,033 –11,046.
Wald, D. J. (1996). A dislocation model of the 1995 Kobe, Japan earthquake determined
from strong motion, teleseismic, and geodetic data, J. Phys. Earth 44,489 –503.
Wald, D. J., and T. H. Heaton (1994). Spatial and temporal distribution of slip for the
1992 Landers, California, earthquake, Bull. Seism. Soc. Am. 84,668 –
691.[Abstract/Free Full Text]
Wald, D. J., and P. G. Somerville (1995). Variable-slip rupture model of the great 1923
Kanto, Japan earthquake; geodetic and body-waveform analysis, Bull. Seism. Soc. Am.
85,159 –177.[Abstract/Free Full Text]
Wald, D. J., D. V. Helmberger, and S. H. Hartzell (1990). Rupture process of the 1987
Superstition Hills earthquake from the inversion of strong-motion data, Bull. Seism. Soc.
Am., 80,1079 –1098.[Abstract/Free Full Text]
Wald, D. J., H. Kanamori, D. V. Helmberger and T. H. Heaton (1993). Source study of
the 1906 San Francisco earthquakes, Bull. Seism. Soc. Am. 83,981 –
1019.[Abstract/Free Full Text]
Wald, D. J., D. V. Helmberger, and T. H. Heaton (1991). Rupture model of the 1989
Loma Prieta earthquake from the inversion of strong-motion and broadband teleseismic
data, Bull. Seism. Soc. Am. 81,1540 –1572.[Abstract/Free Full Text]
Wald, D. J., T. H. Heaton, and K. W. Hudnut (1996). The slip history of the 1994
Northridge, California, earthquake determined from strong-motion, teleseismic, GPS, and
leveling data, Bull. Seism. Soc. Am. 86,49 –70.[GeoRef]
Wells, D. L., and K. J. Coppersmith (1994). New empirical relationships among
magnitude, rupture length, rupture width, rupture area, and surface displacement, Bull.
Seism. Soc. Am. 84,974 –1002.[Abstract/Free Full Text]
Wyss, M. (1979). Estimating maximum expectable magnitude of earthquakes from fault
dimensions, Geology 7,336 –340.[Abstract/Free Full Text]
Yoshida, S., K. Koketsu, T. Kato, B. Shibazaki, T. Sagiya, and Y. Yoshida (1996). Joint
inversion of near- and far-field waveforms and geodetic data for the rupture process of
the 1995 Kobe earthquake, J. Phys. Earth 44,437 –454.
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