Below are selected publications. For each item, the official version is linked via DOI.
Where legally possible, I may provide an author-accepted manuscript or preprint PDF.
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- **Fuji, N.** (2025). «Évolution(s)» vue(s) par un géophysicien. *Évolution(s) - Science, art et littérature* (Eds. Séginger, G. & Yvonnet, J.), 289–306. - DOI: https://doi.org/10.3917/edmat.segin.2025.01.0289 - PDF (legal): *(add your link)*- **Fuji, N.** (2024). The interpretation limits of seismological exploration and the possibility of water existence in the Earth’s interior (in Japanese). *The Review of High Pressure Science and Technology*, 33(3), 158–167. - DOI: *(add if any)* - PDF (legal): *(add your link)*- **Fuji, N.**, Olive, J.-A., & Hernlund, J. (2023). Editorial: Collaborative Exploration of Earth's Deep Interiors (CLEEDI). *Frontiers in Earth Science*, 11, 1220375. - DOI: https://doi.org/10.3389/feart.2023.1220375 - PDF (legal): *(add your link)*
Pestes, R., Coelho, J.A.B., Durand, S., Fuji, N., Kaminski, E., Maderer, L., van Elewyck, V. (2023). Towards a 3D neutrino tomography of the Earth’s mantle. Proceedings of Science (ICRC 2023), 1162.
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Xu, Z., Broquet, A., Fuji, N., et al. (2023). Investigation of Martian Regional Crustal Structure Near the Dichotomy Using S1222a Surface‐Wave Group Velocities. Geophysical Research Letters, 50, e2023GL103136.
- DOI: https://doi.org/10.1029/2023GL103136
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Kawamura, T., Grott, M., Garcia, R., … Fuji, N., … (2022). An autonomous lunar geophysical experiment package (ALGEP) for future space missions. Experimental Astronomy.
- DOI: https://doi.org/10.1007/s10686-022-09857-6
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Jacob, A., Plasman, M., Perrin, C., Fuji, N., et al. (2022). Seismic sources of InSight marsquakes and seismotectonic context of Elysium Planitia, Mars. Tectonophysics, 837, 229434.
- DOI: (add if any)
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Perrin, C., Jacob, A., Lucas, A., … Fuji, N., … (2022). Geometry and Segmentation of Cerberus Fossae, Mars: Implications for Marsquake Properties. Journal of Geophysical Research: Planets, 127, e2021JE007118.
- DOI: https://doi.org/10.1029/2021JE007118
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Lai, S., Fuji, N., Katayama, I., Bonilla, F., & Capdeville, Y. (2021). Rock deformation monitoring using Monte Carlo waveform inversion. Journal of Geophysical Research: Solid Earth, 126, e2021JB021873.
- DOI: https://doi.org/10.1029/2021JB021873
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Brinkman, N., Stähler, S.C., Giardini, D., … Fuji, N., … (2021). First focal mechanisms of marsquakes. Journal of Geophysical Research: Planets, 126, e2020JE006546.
- DOI: https://doi.org/10.1029/2020JE006546
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Fuji, N., Jang, H., Nakao, A., Kim, Y.-H., Fernández-Blanco, D., Lee, S.-M., Schroeder, A., Konishi, K. (2021). A Possible Roll-over Slab Geometry under the Caroline Plate Imaged by Monte Carlo Finite-Frequency Traveltime Inversion of Teleseismic SS Phases. Frontiers in Earth Science, 9, 29.
- DOI: (Frontiers DOIs vary; add exact DOI if you want)
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Yuan, S., Fuji, N., & Singh, S. (2021). High-frequency localized elastic full waveform inversion for time-lapse seismic surveys. Geophysics, 86(3), 1–55.
- DOI: (add if any)
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Franken, K., Armitage, J.J., Fuji, N., & Fournier, F. (2020). Seismic Wave‐Based Constraints on Geodynamical Processes… Réunion Island. Geochemistry, Geophysics, Geosystems, 21(5), e2019GC008815.
- DOI: https://doi.org/10.1029/2019GC008815
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Konishi, K., Fuji, N., & Deschamps, F. (2020). 3-D elastic and anelastic structure… western Pacific. Journal of Geophysical Research: Solid Earth, 125(2), e2019JB018089.
- DOI: https://doi.org/10.1029/2019JB018089
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Xiao, Z., Fuji, N., et al. (2020). Seismic structure beneath the Tibetan Plateau… Journal of Geophysical Research: Solid Earth.
- DOI: https://doi.org/10.1029/2019JB018344
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Lognonné, P., Banerdt, W.B., Pike, W.T., … Fuji, N., … (2020). Constraints on the shallow elastic and anelastic structure of Mars from InSight seismic data. Nature Geoscience.
- DOI: https://doi.org/10.1038/s41561-020-0536-y
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Deschamps, F., Konishi, K., Fuji, N., & Cobden, L. (2019). Radial thermo-chemical structure… Pacific. Earth and Planetary Science Letters, 520, 153–163.
- DOI: (add if any)
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Smrekar, S.E., Lognonné, P., Spohn, T., … Fuji, N., … (2019). Pre-mission InSights on the interior of Mars. Space Science Reviews, 215.
- DOI: https://doi.org/10.1007/s11214-018-0563-9
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Daubar, I., Lognonné, P., Teanby, N.A., … Fuji, N., … (2018). Impact-seismic investigations of the InSight mission. Space Science Reviews, 214(8), 132.
- DOI: (add if any)
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Hasegawa, K., Fuji, N., & Konishi, K. (2018). Improvement of accuracy of the spectral element method… Computer Methods in Applied Mechanics and Engineering.
- DOI: https://doi.org/10.1016/j.cma.2018.07.025
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Marjanović, M., Fuji, N., Singh, S., Belahi, T., & Escartin, J. (2017). Seismic Signatures of Hydrothermal Pathways Along the East Pacic Rise Between 9°160 and 9°560N. Journal of Geophysical Research: Solid Earth.
Yuan, S., Fuji, N., & Singh, S. (2017). Localized time-lapse elastic waveform inversion using wavefield injection and extrapolation: 2-D parametric studies. Geophysical Journal International, 209, 1699–1717.
Konishi, K., Fuji, N., & Deschamps, F. (2017). Elastic and anelastic structure of the lowermost mantle beneath the Western Pacific from waveform inversion. Geophysical Journal International, 208, 1290–1304.
Belahi, T., Fuji, N., Singh, S. (2016). Viscoelastic Full Waveform Inversion of Sea Bottom Long Offset Seismic Data in Presence of Attenuation. EAGE abstract
Fuji, N., Ovcharenko, O., Martin, R., & Cuvilliez, C. (2016). Simple and Accurate Operators Based on Taylor Expansion for 2D Elastic Seismogram Calculation under Geological Discontinuities with Regular Cartesian Grids. EAGE abstract
Marjanović, M, Fuji, N., Singh, S. & Belahi, T. (2016). Imaging Hydrothermal Circulation Paths along the East Pacific Rise Using Elastic Wave-equation Based Inversion Technique. EAGE abstract
Yuan, S., Fuji, N., Borisov, D., Singh, S. (2016). Localised Time-lapse 3D Elastic Full Waveform Inversion Using Finite-difference Injection and Wavefield Extrapolation. EAGE abstract
Villanueva-Robles, F., Fuji, N., Shapiro, N., & Singh, S. (2015). Near-offset Trace Reconstruction from Sparse Ocean Bottom Seismometer Data Using Seismic Interferometry. EAGE abstract
Borisov, D., Singh, S., & Fuji, N. (2015). An efficient method of 3-D elastic full waveform inversion using a finite-difference injection method for time-lapse imaging. Geophysical Journal International, 202, 1908–1922.
Belahi, T., Fuji, N., & Singh, S. (2015) Elastic Versus Viscoelastic Full Waveform Inversion of Near-offset and Wide-angle Data in the Presence of Attenuation, EAGE abstract
Konishi, K., Kawai, K., Geller, R.J., & Fuji, N. (2014). Waveform inversion for localized three-dimensional seismic velocity structure in the lowermost mantle beneath the Western Pacific. Geophysical Journal International, 199, 1245–1267.
Kawai, K., Konishi, K., Geller, R.J., & Fuji, N. (2014). Methods for inversion of body-wave waveforms for localized three-dimensional seismic structure and an application to D’’ structure beneath Central America. Geophysical Journal International.
- Monteiller, V., Chevrot, S., Komatitsch, D., & Fuji, N. (2013). A hybrid method to compute short-period synthetic seismograms of teleseismic body waves in a 3-D regional model. Geophysical Journal International, 192, 230–247.
- DOI: https://doi:10.1093/gji/ggs006
Konishi, K., Kawai, K., Geller, R.J., & Fuji, N. (2012). Waveform inversion of broad-band body wave data for the S-velocity structure in the lowermost mantle beneath the Indian subcontinent and Tibetan Plateau. Geophysical Journal International, 191, 305–316.
Fuji, N., Chevrot, S., Zhao, L., Geller, R.J., & Kawai, K. (2012). Finite-frequency structural sensitivities of short-period compressional body waves. Geophysical Journal International, 190, 522–540.
- Monteiller, V., Chevrot, S., Komatitsch, D., & Fuji, N. (2011). A hybrid technique for 3-D modelling of high frequency teleseismic body waves in the Earth, EAGE abstract
Fuji, N. (2010). A methodology for inversion of seismic waveforms for elastic and anelastic structure and its preliminary application to the mantle transition zone beneath the Northwestern Pacific. PhD thesis University of Tokyo.
Fuji, N., Kawai, K., & Geller, R.J. (2010). A methodology for inversion of broadband seismic waveforms for elastic and anelastic structure and its application to the mantle transition zone beneath the northwestern Pacific. Physics of the Earth and Planetary Interiors, 180, 118–137.
Kawai, K., Geller, R.J., & Fuji, N. (2010). Waveform inversion for S-wave structure in the lowermost mantle beneath the Arctic: Implications for mineralogy and chemical composition. Geophysical Research Letters, 37, L16301.
Kawai, K., Sekine, S., Fuji, N., & Geller, R.J. (2009). Waveform inversion for D" structure beneath northern Asia using Hi-net tiltmeter data. Geophysical Research Letters, 36, L039651.
Konishi, K., Kawai, K., Geller, R.J., & Fuji, N. (2009). MORB in the lowermost mantle beneath the western Pacific: Evidence from waveform inversion. Earth and Planetary Science Letters, 278, 219–225.
Kawai, K., Geller, R.J., & Fuji, N. (2007). Dʺ beneath the Arctic from inversion of shear waveforms. Geophysical Research Letters, 34, L031517.
Kawai, K., Takeuchi, N., Geller, R.J., & Fuji, N. (2007). Possible evidence for a double crossing phase transition in Dʺ beneath Central America from inversion of seismic waveforms. Geophysical Research Letters, 34, L029642.