Illuminating seafloor faults and ocean dynamics with dark fiber distributed acoustic sensing NJ Lindsey, TC Dawe, JB Ajo-Franklin Science 366 (6469), 1103-1107, 2019 | 405 | 2019 |
Distributed acoustic sensing for seismic monitoring of the near surface: A traffic-noise interferometry case study S Dou, N Lindsey, AM Wagner, TM Daley, B Freifeld, M Robertson, ... Scientific reports 7 (1), 11620, 2017 | 399 | 2017 |
Distributed acoustic sensing using dark fiber for near-surface characterization and broadband seismic event detection JB Ajo-Franklin, S Dou, NJ Lindsey, I Monga, C Tracy, M Robertson, ... Scientific reports 9 (1), 1328, 2019 | 388 | 2019 |
Fiber‐optic network observations of earthquake wavefields NJ Lindsey, ER Martin, DS Dreger, B Freifeld, S Cole, SR James, ... Geophysical Research Letters 44 (23), 11,792-11,799, 2017 | 376 | 2017 |
Global quieting of high-frequency seismic noise due to COVID-19 pandemic lockdown measures T Lecocq, SP Hicks, K Van Noten, K Van Wijk, P Koelemeijer, ... Science 369 (6509), 1338-1343, 2020 | 333 | 2020 |
On the broadband instrument response of fiber‐optic DAS arrays NJ Lindsey, H Rademacher, JB Ajo‐Franklin Journal of Geophysical Research: Solid Earth 125 (2), e2019JB018145, 2020 | 209 | 2020 |
Fiber-optic seismology NJ Lindsey, ER Martin Annual Review of Earth and Planetary Sciences 49, 309-336, 2021 | 165 | 2021 |
City‐scale dark fiber DAS measurements of infrastructure use during the COVID‐19 pandemic NJ Lindsey, S Yuan, A Lellouch, L Gualtieri, T Lecocq, B Biondi Geophysical research letters 47 (16), e2020GL089931, 2020 | 116 | 2020 |
The potential of DAS in teleseismic studies: Insights from the Goldstone experiment C Yu, Z Zhan, NJ Lindsey, JB Ajo‐Franklin, M Robertson Geophysical Research Letters 46 (3), 1320-1328, 2019 | 113 | 2019 |
Comparison between distributed acoustic sensing and geophones: Downhole microseismic monitoring of the FORGE geothermal experiment A Lellouch, NJ Lindsey, WL Ellsworth, BL Biondi Seismological Society of America 91 (6), 3256-3268, 2020 | 91 | 2020 |
Utilizing distributed acoustic sensing and ocean bottom fiber optic cables for submarine structural characterization F Cheng, B Chi, NJ Lindsey, TC Dawe, JB Ajo-Franklin Scientific reports 11 (1), 5613, 2021 | 85 | 2021 |
Resistivity characterization of the Krafla and Hengill geothermal fields through 3D MT inverse modeling E Gasperikova, GK Rosenkjaer, K Arnason, GA Newman, NJ Lindsey Geothermics 57, 246-257, 2015 | 69 | 2015 |
Introduction to interferometry of fiber‐optic strain measurements ER Martin, NJ Lindsey, JB Ajo‐Franklin, BL Biondi Distributed acoustic sensing in geophysics: Methods and applications, 111-129, 2021 | 64 | 2021 |
Time-lapse surface wave monitoring of permafrost thaw using distributed acoustic sensing and a permanent automated seismic source J Ajo-Franklin, S Dou, T Daley, B Freifeld, M Robertson, C Ulrich, T Wood, ... SEG International Exposition and Annual Meeting, SEG-2017-17774027, 2017 | 61 | 2017 |
Low‐magnitude seismicity with a downhole distributed acoustic sensing array—Examples from the FORGE geothermal experiment A Lellouch, R Schultz, NJ Lindsey, BL Biondi, WL Ellsworth Journal of Geophysical Research: Solid Earth 126 (1), e2020JB020462, 2021 | 46 | 2021 |
Earthquakes analysis using data recorded by the Stanford DAS array B Biondi, E Martin, S Cole, M Karrenbach, N Lindsey SEG International Exposition and Annual Meeting, SEG-2017-17745041, 2017 | 42 | 2017 |
Interferometry of a roadside DAS array in Fairbanks, AK E Martin, N Lindsey, S Dou, J Ajo-Franklin, T Daley, B Freifeld, ... SEG International Exposition and Annual Meeting, SEG-2016-13963708, 2016 | 37 | 2016 |
Comparison of 3D MT inversions for geothermal exploration: Case studies for Krafla and Hengill geothermal systems in Iceland GK Rosenkjaer, E Gasperikova, GA Newman, K Arnason, NJ Lindsey Geothermics 57, 258-274, 2015 | 37 | 2015 |
New opportunities to study earthquake precursors ME Pritchard, RM Allen, TW Becker, MD Behn, EE Brodsky, R Bürgmann, ... Seismological Society of America 91 (5), 2444-2447, 2020 | 36 | 2020 |
Improved workflow for 3D inverse modeling of magnetotelluric data: Examples from five geothermal systems NJ Lindsey, GA Newman Geothermics 53, 527-532, 2015 | 36 | 2015 |