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Publications 2018

Baykiev, E., Guerri, M., & Fullea, J. (2018). Integrating gravity and surface elevation with magnetic data: mapping the Curie temperature beneath the British Isles and surrounding areas. Frontiers in Earth Science, 6, 165. 

Blake, S.P., Gallagher P.T., Campanyà J., Hogg, C.,  Beggan C, Thomson A.W.P., Richardson, G.S., Bell, D, 2018, A Detailed Model of the Irish High Voltage Power Network for Simulating GICs, Spaceweather, https://doi.org/10.1029/2018SW001926

Bonadio, R., Geissler, W., Lebedev, S., Fullea, J., Ravenna, M., Celli, N., Jokat, W., Jegen, M., Sens-Schonfelder, C., Baba, K., 2018. Hot upper mantle beneath the Tristan da Cunha Hotspot, from probabilistic Rayleigh-wave inversion and petrological modeling. Geochem. Geophys. Geosyst., doi:10.1002/2017GC007347.   

Bonadio, R., W.H. Geissler, S. Lebedev, J. Fullea, M. Ravenna, N.L. Celli, W. Jokat, M. Jegen, C. Sens-Schönfelder, K. Baba. Hot upper mantle beneath the Tristan da Cunha Hotspot, from probabilistic Rayleigh-wave inversion and petrological modeling. Geochem. Geophys. Geosyst., 19, 1412–1428, 2018. 

Chen, C., Watremez, L., Prada, M., Minshull, T., Edwards, R., O’Reilly, B., Reston, T., Wagner, G., Gaw, V., Klaschen, D. and Shannon, P. (2018).From Continental Hyperextension to Seafloor Spreading: New Insights on the Porcupine Basin from Wide‐angle Seismic Data. Journal of Geophysical Research: Solid Earth. DOI: 10.1029/2018JB016375. 

Delhaye, R., Rath, V., Jones, A.G., Muller, M. R. and Reay, D., 2018. Quantitative geothermal interpretation of electrical resistivity models of the Rathlin Basin, Northern Ireland, Geothermics, 77, pp. 175 – 187. https://doi.org/10.1016/j.geothermics.2018.09.012

Golos, E. M., H. Fang, H. Yao, H. Zhang, S. Burdick, F. Vernon. A. Schaeffer, S. Lebedev, R. D. van der Hilst. Shear-wave tomography beneath the United States using a joint inversion of surface and body waves. J. Geophys. Res., doi:10.1029/2017JB014894, 2018.  

Hogg, C., D. Kiyan, V. Rath, S. Byrdina, J. Vandemeulebrouck, A. Revil, F. Viveiros, R. Carmo, R. Silva, and T. Ferreira (2018), 3-D interpretation of short-period magnetotelluric data at Furnas Volcano, Azores Islands, Geophysical Journal International, 213, 371-386, doi:10.1093/gji/ggx512. 

Lebedev, S., A.J. Schaeffer, J. Fullea, and V. Pease (2018), Seismic tomography of the Arctic region: Inferences for the thermal structure and evolution of the lithosphere, In Pease, V. & Coakley, B. (eds.) Circum-Arctic Lithosphere Evolution. Geological Society, London, Special Publications, 460, 419-440.

Licciardi, A., T. Eken, T. Taymaz, N. Piana Agostinetti, and S. Yolsal-Çevikbilen (2018), Seismic anisotropy in central North Anatolian Fault Zone and its implications on crustal deformation, Physics of the Earth and Planetary Interiors, https://doi.org/10.1016/j.pepi.2018.01.012

Mandolesi, E., X. Ogaya, J. Campania, and N. Piana Agostinetti (2018), A reversible-jump Markov chain Monte Carlo algorithm for 1D inversion of magnetotelluric data, Computers & Geosciences, https://doi.org/10.1016/j.cageo.2018.01.011

Martinec, Z., Einspigel, D., 2018. SHAVEL: A program for the spherical harmonic analysis of a horizontal vector field sampled in an equiangular grid on a sphere. Computer Physics Communications, 233, 206-214. 

Martinec, Z., J. Velimsky, R. Haagmans, and L. Sachl (2018), A two-step along-track spectral analysis for estimating the magnetic signals of magnetospheric ring current from Swarm data,  Geophys. J., Int., 212, 1201—1217. 

Martinec, Z., Klemann, V., van der Wal, W., Riva, R.E.M., Spada, G., Sun, Y, Melini, D., Kachuck, S.B., Barletta, V., Simon, K., A, G, James, T.S., 2018. A benchmark study of numerical implementations of the sea level equation in GIAmodelling. Geophys. J., Int., 215, 389-414. 

Mather, B., Farrell, T., Fullea, J. (In press) Probablistic surface heat flow estimates assimilating paleoclimate history: new implications for Ireland’s thermochemical structure”, J. Geophys. Res. 

 Patocka, V., Cadek, O., Martinec, Z., 2018. Energy balance of glacial isostatic adjustment: importance of the rotational feedback. Geophys. J., Int., 212, 955-975. 

Patocka, V., O. Cadek, and Z. Martinec (2018), Energy balance of glacial isostatic adjustment: importance of the rotational feedback, Geophys. J. Int.,  212, 955—975. 

Piana Agostinetti, N., and A. Malinverno (2018), Assessing uncertainties in high-resolution, multi-frequency receiver function inversion: a comparison with borehole data, Geophysics, 83, (3), 1-12, doi:10.1190/GEO2017-0350.1 . 

Prada, M., F. Lavoué, M. M. Saqab, B. M. O’Reilly, S. Lebedev, J. J. Walsh, C. Childs, Across-axis variations in petrophysical properties of the North Porcupine Basin, offshore Ireland: new insights from long-streamer traveltime tomography. Basin Research, https://doi.org/10.1111/bre.12308, 2018.  

Ravenna, M., and S. Lebedev (2018), Bayesian inversion of surface-wave data for radial and azimuthal shear-wave anisotropy, with applications to central Mongolia and west-central Italy. Geophys. J. Int., 213, 278–300. 

Ravenna, M., Lebedev, S., Fullea, J., Adam, J. M.-C., 2018. Shear-wave velocity structure of southern Africa’s lithosphere: Variations in the thickness and composition of cratons and their effect on topography. Geochem. Geophys. Geosyst., doi:10.1029/2017GC007399.  

Ravenna, M., S. Lebedev, J. Fullea, J. M.-C. Adam. Shear-wave velocity structure of southern Africa’s lithosphere: Variations in the thickness and composition of cratons and their effect on topography. Geochem. Geophys. Geosyst., 19, 1499–1518, 2018. 

A Ahmed, A. Revil, S. Byrdina, A. Coperey, L. Gailler, et al.. 3D electrical conductivity tomography of volcanoes. Journal of Volcanology and Geothermal Research, Elsevier, 2018, 356, pp.243-263. DOI: 10.1016/j.jvolgeores.2018.03.017

Steinberger, B., E. Bredow, S. Lebedev, A. Schaeffer, T. H. Torsvik. Widespread volcanism in the Greenland-North Atlantic region explained by the Iceland plume. Nature Geoscience, 2018