Modeling two-dimensional structure at the core-mantle boundary

被引:19
作者
Helmberger, DV [1 ]
Garnero, EJ [1 ]
Ding, X [1 ]
机构
[1] UNIV CALIF SANTA CRUZ, INST TECTON, DEPT EARTH SCI, SANTA CRUZ, CA 95064 USA
关键词
D O I
10.1029/96JB00534
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
Recent studies of SKS waveform modeling emphasize the strong variation of Seismic properties at the core-mantle boundary (CMB) and the need for two-dimensional and three-dimensional waveform modeling capabilities, In particular, the bifurcation of SKS into SPdKS and SKPdS near 110 degrees shows strong regional variations. The first of these phases has a P wave diffraction along the bottom of the mantle near the source, while the latter phase occurs at the receiver end, Generalized ray theory proves effective in generating theoretical seismograms in this type of problem because each of these diffractions is associated with a particular transmission coefficient: T-sp which transmits shear waves into primary waves when crossing the CMB and T-ps which transmits the primary waves back into shear waves at the receiver end. Each region can then be isolated and have its separate fine structure sharp or gradational. Two classes of boundaries are explored: the CMB as a simple, sharp interface and the CMB with a-very low velocity transition layer (10% Slower than reference models). The two diffractions produced by these structures have diagnostic arrival times and wave shapes and when combined with the geometric SKS produce distinct waveform characteristics not easily generated by other means. Since the ray paths associated with these three phases are virtually identical in the mantle and only differ along a short sample of CMB and in the one-dimensional fluid core, we can isolate the small localized CMB region sampled. Thus the waveform character of the extended SKS in the range of 105 degrees to 120 degrees becomes an excellent CMB probe which we demonstrate on a small sample of observations from the Fiji-Tonga region as recorded in North America.
引用
收藏
页码:13963 / 13972
页数:10
相关论文
共 29 条
[11]   GENERALIZED RAY THEORY FOR A LAYERED SPHERE [J].
GILBERT, F ;
HELMBERGER, DV .
GEOPHYSICAL JOURNAL OF THE ROYAL ASTRONOMICAL SOCIETY, 1972, 27 (01) :57-+
[12]   MANTLE SHEAR STRUCTURE BENEATH THE AMERICA AND SURROUNDING OCEANS [J].
GRAND, SP .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 1994, 99 (B6) :11591-11621
[13]  
HELMBERG.DV, 1973, B SEISMOL SOC AM, V63, P633
[14]   UPPER MANTLE STRUCTURE OF MIDWESTERN UNITED-STATES [J].
HELMBERGER, D ;
WIGGINS, RA .
JOURNAL OF GEOPHYSICAL RESEARCH, 1971, 76 (14) :3229-+
[15]   SYNTHETIC SEISMOGRAMS [J].
HELMBERGER, DV ;
BURDICK, LJ .
ANNUAL REVIEW OF EARTH AND PLANETARY SCIENCES, 1979, 7 :417-442
[16]  
HELMBERGER DV, 1983, EARTHQUAKES OBSERVAT, V37, P174
[17]  
HELMBERGER DV, 1996, IN PRESS SEISMIC MOD
[18]  
KIND R, 1975, J GEOPHYS-Z GEOPHYS, V41, P149
[19]   A LOWER MANTLE S-WAVE TRIPLICATION AND THE SHEAR VELOCITY STRUCTURE OF D'' [J].
LAY, T ;
HELMBERGER, DV .
GEOPHYSICAL JOURNAL OF THE ROYAL ASTRONOMICAL SOCIETY, 1983, 75 (03) :799-837
[20]   BODY WAVE AMPLITUDE PATTERNS AND UPPER MANTLE ATTENUATION VARIATIONS ACROSS NORTH-AMERICA [J].
LAY, T ;
HELMBERGER, DV .
GEOPHYSICAL JOURNAL OF THE ROYAL ASTRONOMICAL SOCIETY, 1981, 66 (03) :691-726