fate of slabs. invert p waves for 3-d mantle structure 10 million travel times: isc, neic, temporary...

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Fate of Slabs

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Page 1: Fate of Slabs. Invert P waves for 3-D mantle structure 10 million travel times: ISC, NEIC, temporary arrays 0.5 million earthquakes Ray theory & 3-D sensitivity

Fate of Slabs

Page 2: Fate of Slabs. Invert P waves for 3-D mantle structure 10 million travel times: ISC, NEIC, temporary arrays 0.5 million earthquakes Ray theory & 3-D sensitivity

Invert P waves for 3-D mantle structure

10 million travel times: ISC, NEIC, temporary arrays0.5 million earthquakesRay theory & 3-D sensitivity kernelsModel norm and gradient regularization

Li, van der Hilst, Engdahl, and Burdick, 2008; G3

Page 3: Fate of Slabs. Invert P waves for 3-D mantle structure 10 million travel times: ISC, NEIC, temporary arrays 0.5 million earthquakes Ray theory & 3-D sensitivity
Page 4: Fate of Slabs. Invert P waves for 3-D mantle structure 10 million travel times: ISC, NEIC, temporary arrays 0.5 million earthquakes Ray theory & 3-D sensitivity
Page 5: Fate of Slabs. Invert P waves for 3-D mantle structure 10 million travel times: ISC, NEIC, temporary arrays 0.5 million earthquakes Ray theory & 3-D sensitivity

1-4 Cocos plate: complex structures into lower mantle

6-9 Nazca and Farallon plates subduct into lower mantle

10 South Sandwich Islands

Page 6: Fate of Slabs. Invert P waves for 3-D mantle structure 10 million travel times: ISC, NEIC, temporary arrays 0.5 million earthquakes Ray theory & 3-D sensitivity

Steep upper mantle slabs (Kuril, Mariana) subduct below 660

Shallow-dip(Japan, Izu-Bonin) and young slabs (Ryukyu) stagnate in transition zone

Page 7: Fate of Slabs. Invert P waves for 3-D mantle structure 10 million travel times: ISC, NEIC, temporary arrays 0.5 million earthquakes Ray theory & 3-D sensitivity
Page 8: Fate of Slabs. Invert P waves for 3-D mantle structure 10 million travel times: ISC, NEIC, temporary arrays 0.5 million earthquakes Ray theory & 3-D sensitivity

• Deep subduction: Central America, Indochina, segments of NW and SW Pacific

• Stagnation of slab fragments (400-1000 km) N Philippine Sea plate and SE Asia, Mediterranean, parts of Tonga

Page 9: Fate of Slabs. Invert P waves for 3-D mantle structure 10 million travel times: ISC, NEIC, temporary arrays 0.5 million earthquakes Ray theory & 3-D sensitivity
Page 10: Fate of Slabs. Invert P waves for 3-D mantle structure 10 million travel times: ISC, NEIC, temporary arrays 0.5 million earthquakes Ray theory & 3-D sensitivity
Page 11: Fate of Slabs. Invert P waves for 3-D mantle structure 10 million travel times: ISC, NEIC, temporary arrays 0.5 million earthquakes Ray theory & 3-D sensitivity

(Kellogg et al. 1999)

Page 12: Fate of Slabs. Invert P waves for 3-D mantle structure 10 million travel times: ISC, NEIC, temporary arrays 0.5 million earthquakes Ray theory & 3-D sensitivity
Page 13: Fate of Slabs. Invert P waves for 3-D mantle structure 10 million travel times: ISC, NEIC, temporary arrays 0.5 million earthquakes Ray theory & 3-D sensitivity
Page 14: Fate of Slabs. Invert P waves for 3-D mantle structure 10 million travel times: ISC, NEIC, temporary arrays 0.5 million earthquakes Ray theory & 3-D sensitivity
Page 15: Fate of Slabs. Invert P waves for 3-D mantle structure 10 million travel times: ISC, NEIC, temporary arrays 0.5 million earthquakes Ray theory & 3-D sensitivity
Page 16: Fate of Slabs. Invert P waves for 3-D mantle structure 10 million travel times: ISC, NEIC, temporary arrays 0.5 million earthquakes Ray theory & 3-D sensitivity
Page 17: Fate of Slabs. Invert P waves for 3-D mantle structure 10 million travel times: ISC, NEIC, temporary arrays 0.5 million earthquakes Ray theory & 3-D sensitivity

South America

Page 18: Fate of Slabs. Invert P waves for 3-D mantle structure 10 million travel times: ISC, NEIC, temporary arrays 0.5 million earthquakes Ray theory & 3-D sensitivity