Gravity gradient tensor analysis to an active fault: a case study at the Togi-gawa Nangan fault, Noto Peninsula, central Japan, Earth, Planets and Space
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![Gravity gradient tensor analysis to an active fault: a case study at the Togi-gawa Nangan fault, Noto Peninsula, central Japan, Earth, Planets and Space](https://media.springernature.com/w290h158/springer-static/image/art%3A10.1186%2Fs40623-019-1122-7/MediaObjects/40623_2019_1122_Figa_HTML.png)
Earth, Planets and Space
![Gravity gradient tensor analysis to an active fault: a case study at the Togi-gawa Nangan fault, Noto Peninsula, central Japan, Earth, Planets and Space](https://ars.els-cdn.com/content/image/1-s2.0-S0169555X20301860-gr5.jpg)
Synchronized gravitational slope deformation and active faulting: A case study on and around the Neodani fault, central Japan - ScienceDirect
![Gravity gradient tensor analysis to an active fault: a case study at the Togi-gawa Nangan fault, Noto Peninsula, central Japan, Earth, Planets and Space](https://media.springernature.com/m685/springer-static/image/art%3A10.1186%2Fs40623-017-0602-x/MediaObjects/40623_2017_602_Figa_HTML.gif)
Continuity of subsurface fault structure revealed by gravity anomaly: the eastern boundary fault zone of the Niigata plain, central Japan, Earth, Planets and Space
![Gravity gradient tensor analysis to an active fault: a case study at the Togi-gawa Nangan fault, Noto Peninsula, central Japan, Earth, Planets and Space](https://www.mdpi.com/minerals/minerals-13-01539/article_deploy/html/images/minerals-13-01539-g009.png)
Minerals, Free Full-Text
![Gravity gradient tensor analysis to an active fault: a case study at the Togi-gawa Nangan fault, Noto Peninsula, central Japan, Earth, Planets and Space](https://www.researchgate.net/publication/318143532/figure/fig2/AS:513169157701632@1499360469231/Model-of-subsurface-structure-A-double-layer-model-consisting-of-a-sedimentary-layer-and_Q320.jpg)
PDF) Eigenvector of gravity gradient tensor for estimating fault dips considering fault type
![Gravity gradient tensor analysis to an active fault: a case study at the Togi-gawa Nangan fault, Noto Peninsula, central Japan, Earth, Planets and Space](https://www.researchgate.net/publication/307899038/figure/fig3/AS:403985166028801@1473328977230/Schematic-illustration-of-the-eigenvectors-for-two-dimensional-2-D-structures-such-as_Q320.jpg)
PDF) Dip distribution of Oita–Kumamoto Tectonic Line located in central Kyushu, Japan, estimated by eigenvectors of gravity gradient tensor
![Gravity gradient tensor analysis to an active fault: a case study at the Togi-gawa Nangan fault, Noto Peninsula, central Japan, Earth, Planets and Space](https://www.mdpi.com/quaternary/quaternary-05-00045/article_deploy/html/images/quaternary-05-00045-g008-550.jpg)
Quaternary, Free Full-Text
![Gravity gradient tensor analysis to an active fault: a case study at the Togi-gawa Nangan fault, Noto Peninsula, central Japan, Earth, Planets and Space](https://ars.els-cdn.com/content/image/1-s2.0-S0169555X20301860-gr8.jpg)
Synchronized gravitational slope deformation and active faulting: A case study on and around the Neodani fault, central Japan - ScienceDirect
![Gravity gradient tensor analysis to an active fault: a case study at the Togi-gawa Nangan fault, Noto Peninsula, central Japan, Earth, Planets and Space](https://www.researchgate.net/publication/369976671/figure/fig1/AS:11431281180548021@1691642348996/Hypocenter-distribution-of-the-earthquake-swarm-in-the-northeastern-of-the-Noto-peninsula_Q320.jpg)
Yoshihiro Hiramatsu's research works Kanazawa University, Kanazawa (Kindai) and other places
![Gravity gradient tensor analysis to an active fault: a case study at the Togi-gawa Nangan fault, Noto Peninsula, central Japan, Earth, Planets and Space](https://media.springernature.com/m685/springer-static/image/art%3A10.1186%2Fs40623-016-0529-7/MediaObjects/40623_2016_529_Figa_HTML.gif)
Dip distribution of Oita–Kumamoto Tectonic Line located in central Kyushu, Japan, estimated by eigenvectors of gravity gradient tensor, Earth, Planets and Space
![Gravity gradient tensor analysis to an active fault: a case study at the Togi-gawa Nangan fault, Noto Peninsula, central Japan, Earth, Planets and Space](https://www.researchgate.net/publication/318143532/figure/fig4/AS:513169156460545@1499360469362/Eigenvectors-of-the-gravity-gradient-tensor-caused-by-the-subsurface-model-shown-in-Fig.png)
Eigenvectors of the gravity gradient tensor caused by the subsurface
![Gravity gradient tensor analysis to an active fault: a case study at the Togi-gawa Nangan fault, Noto Peninsula, central Japan, Earth, Planets and Space](https://media.springernature.com/m685/springer-static/image/art%3A10.1186%2Fs40645-020-00376-6/MediaObjects/40645_2020_376_Fig8_HTML.png)
Half-graben inversion tectonics revealed by gravity modeling in the Mikawa Bay Region, Central Japan, Progress in Earth and Planetary Science
![Gravity gradient tensor analysis to an active fault: a case study at the Togi-gawa Nangan fault, Noto Peninsula, central Japan, Earth, Planets and Space](https://ars.els-cdn.com/content/image/1-s2.0-S0169555X20301860-ga1.jpg)
Synchronized gravitational slope deformation and active faulting: A case study on and around the Neodani fault, central Japan - ScienceDirect
![Gravity gradient tensor analysis to an active fault: a case study at the Togi-gawa Nangan fault, Noto Peninsula, central Japan, Earth, Planets and Space](https://www.researchgate.net/publication/309339082/figure/fig1/AS:419630901415936@1477059211933/First-horizontal-derivative-HD-distribution-of-the-Bouguer-anomaly-shown-in-A_Q320.jpg)
PDF) Continuity, segmentation and faulting type of active fault zones of the 2016 Kumamoto earthquake inferred from analyses of a gravity gradient tensor
![Gravity gradient tensor analysis to an active fault: a case study at the Togi-gawa Nangan fault, Noto Peninsula, central Japan, Earth, Planets and Space](https://media.springernature.com/m685/springer-static/image/art%3A10.1186%2Fs40645-020-00376-6/MediaObjects/40645_2020_376_Figa_HTML.png)
Half-graben inversion tectonics revealed by gravity modeling in the Mikawa Bay Region, Central Japan, Progress in Earth and Planetary Science
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