Zhan, Zhongwen
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- Zhai, Qiushi and Zhan, Zhongwen, et el. (2024) Thousand‐Kilometer DAS Array Reveals an Uncatalogued Magnitude‐5 Dynamically Triggered Event After the 2023 Turkey Earthquake; Journal of Geophysical Research: Solid Earth; Vol. 129; No. 3; e2023JB027680; 10.1029/2023jb027680
- Wu, Wenbo and Zhan, Zhongwen, et el. (2024) Fiber Seismic Network on the Moon; Seismological Research Letters; 10.1785/0220230067
- Peng, Shirui and Callies, Jörn, et el. (2024) Seismic Ocean Thermometry of the Kuroshio Extension Region; Journal of Geophysical Research: Oceans; Vol. 129; No. 2; e2023JC020636; 10.1029/2023jc020636
- Xiao, Han and Spica, Zack J., et el. (2024) Detection of Earthquake Infragravity and Tsunami Waves With Underwater Distributed Acoustic Sensing; Geophysical Research Letters; Vol. 51; No. 2; e2023GL106767; 10.1029/2023gl106767
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- Yin, Jiuxun and Zhu, Weiqiang, et el. (2023) Earthquake Magnitude With DAS: A Transferable Data‐Based Scaling Relation; Geophysical Research Letters; Vol. 50; No. 10; Art. No. e2023GL103045; 10.1029/2023gl103045
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- Fang, Jiaqi and Yang, Yan, et el. (2023) Directional Sensitivity of DAS and Its Effect on Rayleigh-Wave Tomography: A Case Study in Oxnard, California; Seismological Research Letters; Vol. 94; No. 2A; 887-897; 10.1785/0220220235
- Biondi, Ettore and Wang, Xin, et el. (2023) Geolocalization of Large-Scale DAS Channels Using a GPS-Tracked Moving Vehicle; Seismological Research Letters; Vol. 94; No. 1; 318-330; 10.1785/0220220169
- Atterholt, James and Zhan, Zhongwen, et el. (2022) Fault Zone Imaging With Distributed Acoustic Sensing: Body‐To‐Surface Wave Scattering; Journal of Geophysical Research. Solid Earth; Vol. 127; No. 11; Art. No. e2022JB025052; 10.1029/2022jb025052
- Sandanbata, Osamu and Watada, Shingo, et el. (2022) Sub-Decadal Volcanic Tsunamis Due To Submarine Trapdoor Faulting at Sumisu Caldera in the Izu-Bonin Arc; Journal of Geophysical Research. Solid Earth; Vol. 127; No. 9; Art. No. e2022JB024213; 10.1029/2022jb024213
- Atterholt, James and Zhan, Zhongwen, et el. (2022) Fault Zone Imaging with Distributed Acoustic Sensing: Body-to-Surface Wave Scattering; 10.1002/essoar.10511838.1
- Jia, Zhe and Zhan, Zhongwen, et el. (2022) Bayesian differential moment tensor inversion: theory and application to the North Korea nuclear tests; Geophysical Journal International; Vol. 229; No. 3; 2034-2046; 10.1093/gji/ggac053
- Yang, Yan and Zhan, Zhongwen, et el. (2022) Fault Zone Imaging With Distributed Acoustic Sensing: Surface-To-Surface Wave Scattering; Journal of Geophysical Research. Solid Earth; Vol. 127; No. 6; Art. No. e2022JB024329; 10.1029/2022jb024329
- Williams, Ethan F. and Zhan, Zhongwen, et el. (2022) Surface Gravity Wave Interferometry and Ocean Current Monitoring With Ocean‐Bottom DAS; Journal of Geophysical Research. Oceans; Vol. 127; No. 5; Art. No. e2021JC018375; 10.1029/2021jc018375
- Muir, Jack B. and Zhan, Zhongwen (2022) Wavefield-based evaluation of DAS instrument response and array design; Geophysical Journal International; Vol. 229; No. 1; 21-34; 10.1093/gji/ggab439
- Costa, Luis and Zhan, Zhongwen, et el. (2022) Mode-walk-off interferometry for position-resolved optical fiber sensing; 10.48550/arXiv.2203.16783
- Cantono, Mattia and Castellanos, Jorge C., et el. (2022) Optical Network Sensing: Opportunities and Challenges; ISBN 978-1-55752-466-9; 2022 Optical Fiber Communications Conference and Exhibition (OFC); Art. No. M2F.1; 10.1364/ofc.2022.m2f.1
- Castellanos, Jorge C. and Zhan, Zhongwen, et el. (2022) Optical polarization-based sensing and localization of submarine earthquakes; ISBN 978-1-6654-7012-4; 2022 Optical Fiber Communications Conference and Exhibition (OFC); Art. No. M1H.4; 10.1364/ofc.2022.m1h.4
- Mecozzi, Antonio and Cantono, Mattia, et el. (2022) Polarization Sensing with Transmission Fibers in Undersea Cables; ISBN 978-1-55752-466-9; 2022 Optical Fiber Communications Conference and Exhibition (OFC); Art. No. W1D.2; 10.1364/ofc.2022.w1d.2
- Fernández-Ruiz, María R. and Martins, Hugo F., et el. (2022) Seismic Monitoring with Distributed Acoustic Sensing from the Near-surface to the Deep Oceans; Journal of Lightwave Technology; Vol. 40; No. 5; 1453-1463; 10.1109/jlt.2021.3128138
- Sandanbata, Osamu and Watada, Shingo, et el. (2022) Sub-decadal Volcanic Tsunamis Due to Submarine Trapdoor Faulting at Sumisu Caldera in the Izu-Bonin Arc; 10.1002/essoar.10510526.3
- Jia, Zhe and Zhan, Zhongwen, et el. (2022) The 2021 South Sandwich Island Mw 8.2 Earthquake: A Slow Event Sandwiched Between Regular Ruptures; Geophysical Research Letters; Vol. 49; No. 3; Art. No. e2021GL097104; 10.1029/2021GL097104
- Atterholt, James and Zhan, Zhongwen, et el. (2022) A unified wavefield-partitioning approach for distributed acoustic sensing; Geophysical Journal International; Vol. 228; No. 2; 1410-1418; 10.1093/gji/ggab407
- Zhan, Zhongwen (2022) A grand master of seismology and mentoring [Don Helmberger]; Earthquake Science; Vol. 35; No. 1; 61-62; 10.1016/j.eqs.2022.01.011
- Yang, Yan and Atterholt, James W., et el. (2022) Sub‐Kilometer Correlation Between Near‐Surface Structure and Ground Motion Measured With Distributed Acoustic Sensing; Geophysical Research Letters; Vol. 49; No. 1; Art. No. e2021GL096503; 10.1029/2021gl096503
- Shen, Zhichao and Zhan, Zhongwen, et el. (2021) Small‐Scale Intraslab Heterogeneity Weakens Into the Mantle Transition Zone; Geophysical Research Letters; Vol. 48; No. 23; Art. No. e2021GL094470; 10.1029/2021gl094470
- Brissaud, Quentin and Krishnamoorthy, Siddharth, et el. (2021) What can the sound of earthquakes tell us about a planet's interior structure?; 10.1002/essoar.10509367.1
- Muir, Jack B. and Zhan, Zhongwen (2021) Seismic wavefield reconstruction using a pre-conditioned wavelet–curvelet compressive sensing approach; Geophysical Journal International; Vol. 227; No. 1; 303-315; 10.1093/gji/ggab222
- Lai, Voon Hui and Zhan, Zhongwen, et el. (2021) Inflation and Asymmetric Collapse at Kīlauea Summit During the 2018 Eruption From Seismic and Infrasound Analyses; Journal of Geophysical Research. Solid Earth; Vol. 126; No. 10; Art. No. e2021JB022139; 10.1029/2021jb022139
- Cheng, Yifang and Wang, Xin, et el. (2021) Isotropic Source Components of Events in the 2019 Ridgecrest, California, Earthquake Sequence; Geophysical Research Letters; Vol. 48; No. 18; Art. No. e2021GL094515; 10.1029/2021GL094515
- Cantono, Mattia and Castellanos, Jorge C., et el. (2021) Seismic Sensing in Submarine Fiber Cables; ISBN 978-1-6654-3868-1; 2021 European Conference on Optical Communication (ECOC); 1-3; 10.1109/ecoc52684.2021.9605838
- Wang, Xin and Zhan, Zhongwen, et el. (2021) Urban Basin Structure Imaging Based on Dense Arrays and Bayesian Array‐Based Coherent Receiver Functions; Journal of Geophysical Research. Solid Earth; Vol. 126; No. 9; Art. No. e2021JB022279; 10.1029/2021jb022279
- Wang, Xin and Zhan, Zhongwen, et el. (2021) Ground vibrations recorded by fiber-optic cables reveal traffic response to COVID-19 lockdown measures in Pasadena, California; Communications Earth & Environment; Vol. 2; No. 1; Art. No. 160; 10.1038/s43247-021-00234-3
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- Mecozzi, Antonio and Cantono, Mattia, et el. (2021) Polarization sensing using submarine optical cables; Optica; Vol. 8; No. 6; 788-795; 10.1364/optica.424307
- Gonzalez-Herraez, Miguel and Fernández-Ruiz, María R., et el. (2021) Distributed Acoustic Sensing for Seismic Monitoring; ISBN 978-1-943580-86-6; 2021 Optical Fiber Communications Conference and Exhibition (OFC); Art. No. Tu1L.2; 10.1364/ofc.2021.tu1l.2
- Sandanbata, Osamu and Kanamori, Hiroo, et el. (2021) Moment Tensors of Ring-Faulting at Active Volcanoes: Insights Into Vertical-CLVD Earthquakes at the Sierra Negra Caldera, Galápagos Islands; Journal of Geophysical Research. Solid Earth; Vol. 126; No. 6; Art. No. e2021JB021693; 10.1029/2021JB021693
- Jia, Zhensheng and Campos, L. Alberto, et el. (2021) Experimental Coexistence Investigation of Distributed Acoustic Sensing and Coherent Communication Systems; ISBN 978-1-943580-86-6; 2021 Optical Fiber Communications Conference and Exhibition (OFC); Art. No. Th4F.4; 10.1364/ofc.2021.th4f.4
- Li, Zefeng and Shen, Zhichao, et el. (2021) Rapid Response to the 2019 Ridgecrest Earthquake With Distributed Acoustic Sensing; AGU Advances; Vol. 2; No. 2; Art. No. e2021AV000395; 10.1029/2021av000395
- Liu, Hao and Gurnis, Michael, et el. (2021) Tonga Slab Morphology and Stress Variations Controlled by a Relic Slab: Implications for Deep Earthquakes in the Tonga‐Fiji Region; Geophysical Research Letters; Vol. 48; No. 7; Art. No. e2020GL091331; 10.1029/2020gl091331
- Zhan, Zhongwen and Cantono, Mattia, et el. (2021) Optical polarization–based seismic and water wave sensing on transoceanic cables; Science; Vol. 371; No. 6532; 931-936; 10.1126/science.abe6648
- Yu, Chunquan and Castellanos, Jorge C., et el. (2021) Imaging Strong Lateral Heterogeneities Across the Contiguous US Using Body‐To‐Surface Wave Scattering; Journal of Geophysical Research. Solid Earth; Vol. 126; No. 1; Art. No. e2020JB020798; 10.1029/2020JB020798
- Cantono, Mattia and Kamalov, Valey, et el. (2020) Sub-Hertz Spectral Analysis of Polarization of Light in a Transcontinental Submarine Cable; ISBN 978-1-7281-7361-0; 2020 European Conference on Optical Communications (ECOC); 1-3; 10.1109/ECOC48923.2020.9333176
- Lin, Yen-Yu and Kanamori, Hiroo, et el. (2020) Modelling of pulse-like velocity ground motion during the 2018 M_w 6.3 Hualien earthquake, Taiwan; Geophysical Journal International; Vol. 223; No. 1; 348-365; 10.1093/gji/ggaa306
- Lai, Voon Hui and Graves, Robert W., et el. (2020) Shallow Basin Structure and Attenuation Are Key to Predicting Long Shaking Duration in Los Angeles Basin; Journal of Geophysical Research. Solid Earth; Vol. 125; No. 10; Art. No. e2020JB019663; 10.1029/2020jb019663
- Wu, Wenbo and Zhan, Zhongwen, et el. (2020) Seismic ocean thermometry; Science; Vol. 369; No. 6510; 1510-1515; 10.1126/science.abb9519
- Jia, Zhe and Wang, Xin, et el. (2020) Multifault Models of the 2019 Ridgecrest Sequence Highlight Complementary Slip and Fault Junction Instability; Geophysical Research Letters; Vol. 47; No. 17; Art. No. e2020GL089802; 10.1029/2020gl089802
- Wang, Xin and Williams, Ethan F., et el. (2020) Rose Parade Seismology: Signatures of Floats and Bands on Optical Fiber; Seismological Research Letters; Vol. 91; No. 4; 2395-2398; 10.1785/0220200091
- Zhong, Minyan and Zhan, Zhongwen (2020) An array-based receiver function deconvolution method: methodology and application; Geophysical Journal International; Vol. 222; No. 1; 1-14; 10.1093/gji/ggaa113
- Magalhães, Regina and Fernández-Ruiz, María R., et el. (2020) Underwater seismology using submarine dark fibres; ISBN 9781728184234; 2020 22nd International Conference on Transparent Optical Networks (ICTON); 1-4; 10.1109/icton51198.2020.9203132
- Zhan, Zhongwen (2020) Mechanisms and Implications of Deep Earthquakes; Annual Review of Earth and Planetary Sciences; Vol. 48; 147-174; 10.1146/annurev-earth-053018-060314
- Castellanos, Jorge C. and Zhan, Zhongwen, et el. (2020) Absolute Centroid Location of Submarine Earthquakes from 3D Waveform Modeling of Water Reverberations; Journal of Geophysical Research. Solid Earth; Vol. 125; No. 5; Art. No. e2019JB018941; 10.1029/2019JB018941
- Wang, Xin and Zhan, Zhongwen (2020) Seismotectonics and Fault Geometries of the 2019 Ridgecrest Sequence: Insight From Aftershock Moment Tensor Catalog Using 3-D Green's Functions; Journal of Geophysical Research. Solid Earth; Vol. 125; No. 5; Art. No. e2020JB019577; 10.1029/2020jb019577
- Shen, Zhichao and Zhan, Zhongwen (2020) Metastable olivine wedge beneath the Japan Sea imaged by seismic interferometry; Geophysical Research Letters; Vol. 47; No. 6; Art. No. e2019GL085665; 10.1029/2019GL085665
- Fernández-Ruiz, María R. and Soto, Marcelo A., et el. (2020) Distributed acoustic sensing for seismic activity monitoring; APL Photonics; Vol. 5; No. 3; Art. No. 030901; 10.1063/1.5139602
- Jia, Zhe and Shen, Zhichao, et el. (2020) The 2018 Fiji M_w 8.2 and 7.9 deep earthquakes: One doublet in two slabs; Earth and Planetary Science Letters; Vol. 531; Art. No. 115997; 10.1016/j.epsl.2019.115997
- Zhan, Zhongwen (2020) Distributed Acoustic Sensing Turns Fiber‐Optic Cables into Sensitive Seismic Antennas; Seismological Research Letters; Vol. 91; No. 1; 1-15; 10.1785/0220190112
- Wang, Xin and Zhan, Zhongwen (2020) Moving from 1-D to 3-D velocity model: automated waveform-based earthquake moment tensor inversion in the Los Angeles region; Geophysical Journal International; Vol. 220; No. 1; 218-234; 10.1093/gji/ggz435
- Williams, Ethan F. and Fernández-Ruiz, María R., et el. (2019) Distributed sensing of microseisms and teleseisms with submarine dark fibers; Nature Communications; Vol. 10; Art. No. 5778; PMCID PMC6920360; 10.1038/s41467-019-13262-7
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- Fernández-Ruiz, María R. R. and Williams, Ethan L., et el. (2019) Teleseisms monitoring using chirped-pulse φOTDR; ISBN 9781510631236; Seventh European Workshop on Optical Fibre Sensors; Art. No. 1119921; 10.1117/12.2539966
- Yu, Chunquan and Hauksson, Egill, et el. (2019) Depth Determination of the 2010 El Mayor‐Cucapah Earthquake Sequence (M≥4.0); Journal of Geophysical Research. Solid Earth; Vol. 124; No. 7; 6801-6814; 10.1029/2018jb016982
- Yu, Chunquan and Zhan, Zhongwen, et el. (2019) Determining Moho Depth beneath Sedimentary Basins Using Regional Pn Multiples; Bulletin of the Seismological Society of America; Vol. 109; No. 3; 1171-1179; 10.1785/0120180325
- Zhan, Zhongwen (2019) Seismic noise interferometry reveals transverse drainage configuration beneath the surging Bering Glacier; Geophysical Research Letters; Vol. 46; No. 9; 4747-4756; 10.1029/2019GL082411
- Boneh, Yuval and Schottenfels, Emily, et el. (2019) Intermediate depth earthquakes controlled by incoming plate hydration along bending-related faults; Geophysical Research Letters; Vol. 46; No. 7; 3688-3697; 10.1029/2018GL081585
- Martins, Hugo F. and Fernández-Ruiz, María R., et el. (2019) Monitoring of remote seismic events in metropolitan area fibers using distributed acoustic sensing (DAS) and spatiotemporal signal processing; ISBN 9781943580538; Optical Fiber Communication Conference (OFC) 2019, OSA Technical Digest (Optical Society of America, 2019); Art. No. M2J.1; 10.1364/ofc.2019.m2j.1
- Yu, Chunquan and Zhan, Zhongwen, et el. (2019) The potential of distributed acoustic sensing (DAS) in teleseismic studies: insights from the Goldstone experiment; Geophysical Research Letters; Vol. 46; No. 3; 1320-1328; 10.1029/2018gl081195
- Lai, Yujing and Chen, Ling, et el. (2019) Mantle Transition Zone Structure Beneath Northeast Asia From 2‐D Triplicated Waveform Modeling: Implication for a Segmented Stagnant Slab; Journal of Geophysical Research. Solid Earth; Vol. 124; No. 2; 1871-1888; 10.1029/2018jb016642
- Li, Zefeng and Zhan, Zhongwen (2018) Pushing the limit of earthquake detection with distributed acoustic sensing and template matching: a case study at the Brady geothermal field; Geophysical Journal International; Vol. 215; No. 3; 1583-1593; 10.1093/gji/ggy359
- He, Xiaohui and Zhan, Zhongwen, et el. (2018) Rupture Directivity of the 18 April 2008 Mt. Carmel, Illinois, Earthquake from Modeling of Local Seismic Waveforms; Bulletin of the Seismological Society of America; Vol. 108; No. 6; 3278-3288; 10.1785/0120180156
- Wu, Wenbo and Ni, Sidao, et el. (2018) An SEM-DSM three-dimensional hybrid method for modelling teleseismic waves with complicated source-side structures; Geophysical Journal International; Vol. 215; No. 1; 133-154; 10.1093/gji/ggy273
- Zhan, Zhongwen and Li, Qingyang, et el. (2018) Application of wavefield compressive sensing in surface wave tomography; Geophysical Journal International; Vol. 213; No. 3; 1731-1743; 10.1093/gji/ggy082
- Li, Zefeng and Meier, Men-Andrin, et el. (2018) Machine Learning Seismic Wave Discrimination: Application to Earthquake Early Warning; Geophysical Research Letters; Vol. 45; No. 10; 4773-4779; 10.1029/2018GL077870
- Li, Chenyu and Peng, Zhigang, et el. (2018) Abundant aftershock sequence of the 2015 M_w7.5 Hindu Kush intermediate-depth earthquake; Geophysical Journal International; Vol. 213; No. 2; 1121-1134; 10.1093/gji/ggy016
- Yu, Chunquan and Zhan, Zhongwen, et el. (2017) Strong SH -to-Love Wave Scattering off the Southern California Continental Borderland; Geophysical Research Letters; Vol. 44; No. 20; 10208-10215; 10.1002/2017GL075213
- Ko, Justin Yen-Ting and Helmberger, Don V., et el. (2017) Lower-mantle Substructure Embedded in the Farallon Plate: The Hess Conjugate; Geophysical Research Letters; Vol. 44; No. 20; 10216-10225; 10.1002/2017GL075032
- Yue, Han and Castellanos, Jorge C., et el. (2017) Localized water reverberation phases and its impact on back-projection images; Geophysical Research Letters; Vol. 44; No. 19; 9573-9580; 10.1002/2017GL073254
- Yang, Ting and Gurnis, Michael, et el. (2017) Trench motion-controlled slab morphology and stress variations: Implications for the isolated 2015 Bonin Islands deep earthquake; Geophysical Research Letters; Vol. 44; No. 13; 6641-6650; 10.1002/2017GL073989
- Chen, Xiaowei and Nakata, Nori, et el. (2017) The Pawnee earthquake as a result of the interplay among injection, faults and foreshocks; Scientific Reports; Vol. 7; Art. No. 4945; PMCID PMC5504070; 10.1038/s41598-017-04992-z
- Chu, Risheng and Ko, Justin Yen-Ting, et el. (2017) Lithospheric radial anisotropy beneath the Gulf of Mexico; Earth and Planetary Science Letters; Vol. 466; 43-52; 10.1016/j.epsl.2017.02.040
- Zhan, Zhongwen (2017) Gutenberg–Richter law for deep earthquakes revisited: A dual-mechanism hypothesis; Earth and Planetary Science Letters; Vol. 461; 1-7; 10.1016/j.epsl.2016.12.030
- Zhang, Qiong and Lin, Guoqing, et el. (2017) Absence of remote earthquake triggering within the Coso and Salton Sea geothermal production fields; Geophysical Research Letters; Vol. 44; No. 2; 726-733; 10.1002/2016GL071964
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- Zhan, Zhongwen and Kanamori, Hiroo (2016) Recurring large deep earthquakes in Hindu Kush driven by a sinking slab; Geophysical Research Letters; Vol. 43; No. 14; 7433-7441; 10.1002/2016GL069603
- Ye, Lingling and Lay, Thorne, et el. (2016) Diverse rupture processes in the 2015 Peru deep earthquake doublet; Science Advances; Vol. 2; No. 6; Art. No. e1600581; PMCID PMC4928880; 10.1126/sciadv.1600581
- Ye, Lingling and Lay, Thorne, et el. (2016) The isolated ∼680 km deep 30 May 2015 M_W 7.9 Ogasawara (Bonin) Islands earthquake; Earth and Planetary Science Letters; Vol. 433; 169-179; 10.1016/j.epsl.2015.10.049
- Zhan, Zhongwen and Shearer, Peter M., et el. (2015) Supershear rupture in the 24 May 2013 M_w 6.7 Okhotsk deep earthquake: Additional evidence from regional seismic stations; Geophysical Research Letters; Vol. 42; No. 19; 7941-7948; 10.1002/2015GL065446
- Zhan, Zhongwen and Shearer, Peter M. (2015) Possible seasonality in large deep-focus earthquakes; Geophysical Research Letters; Vol. 42; No. 18; 7366-7373; 10.1002/2015GL065088
- Zhan, Zhongwen and Helmberger, Donald V., et el. (2014) Supershear rupture in a M_w 6.7 aftershock of the 2013 Sea of Okhotsk earthquake; Science; Vol. 345; No. 6193; 204-207; 10.1126/science.1252717
- Zhan, Zhongwen and Helmberger, Donald V., et el. (2014) Imaging subducted slab structure beneath the Sea of Okhotsk with teleseismic waveforms; Physics of the Earth and Planetary Interiors; Vol. 232; 30-35; 10.1016/j.pepi.2014.03.008
- Riel, Bryan and Simons, Mark, et el. (2014) Detecting transient signals in geodetic time series using sparse estimation techniques; Journal of Geophysical Research. Solid Earth; Vol. 119; No. 6; 5140-5160; 10.1002/2014JB011077
- Zhan, Zhongwen and Tsai, Victor C., et el. (2014) Ambient noise correlation on the Amery Ice Shelf, East Antarctica; Geophysical Journal International; Vol. 196; No. 3; 1796-1802; 10.1093/gji/ggt488
- Zhan, Zhongwen and Kanamori, Hiroo, et el. (2014) Rupture complexity of the 1994 Bolivia and 2013 Sea of Okhotsk deep earthquakes; Earth and Planetary Science Letters; Vol. 385; 89-96; 10.1016/j.epsl.2013.10.028
- Wei, Shengji and Helmberger, Don, et el. (2013) Rupture complexity of the M_w 8.3 Sea of Okhotsk Earthquake: Rapid triggering of complementary earthquakes?; Geophysical Research Letters; Vol. 40; No. 19; 5034-5039; 10.1002/grl.50977
- Zhan, Zhongwen and Tsai, Victor C., et el. (2013) Spurious velocity changes caused by temporal variations in ambient noise frequency content; Geophysical Journal International; Vol. 194; No. 3; 1574-1581; 10.1093/gji/ggt170
- Nemati, Majid and Hollingsworth, James, et el. (2013) Microseismicity and seismotectonics of the South Caspian Lowlands, NE Iran; Geophysical Journal International; Vol. 193; No. 3; 1053-1070; 10.1093/gji/ggs114
- Lin, Fan-Chi and Tsai, Victor C., et el. (2013) Extracting seismic core phases with array interferometry; Geophysical Research Letters; Vol. 40; No. 6; 1049-1053; 10.1002/grl.50237
- Ma, Yiran and Clayton, Robert W., et el. (2013) Locating a scatterer in the active volcanic area of Southern Peru from ambient noise cross-correlation; Geophysical Journal International; Vol. 192; No. 3; 1332-1341; 10.1093/gji/ggs103
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