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Dive into the research topics where Alberto Jiménez-Díaz is active.

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Featured researches published by Alberto Jiménez-Díaz.


Scientific Reports | 2017

Present-day heat flow model of Mars

Laura M. Parro; Alberto Jiménez-Díaz; Federico Mansilla; Javier Ruiz

Until the acquisition of in-situ measurements, the study of the present-day heat flow of Mars must rely on indirect methods, mainly based on the relation between the thermal state of the lithosphere and its mechanical strength, or on theoretical models of internal evolution. Here, we present a first-order global model for the present-day surface heat flow for Mars, based on the radiogenic heat production of the crust and mantle, on scaling of heat flow variations arising from crustal thickness and topography variations, and on the heat flow derived from the effective elastic thickness of the lithosphere beneath the North Polar Region. Our preferred model finds heat flows varying between 14 and 25 mW m−2, with an average value of 19 mW m−2. Similar results (although about ten percent higher) are obtained if we use heat flow based on the lithospheric strength of the South Polar Region. Moreover, expressing our results in terms of the Urey ratio (the ratio between total internal heat production and total heat loss through the surface), we estimate values close to 0.7–0.75, which indicates a moderate contribution of secular cooling to the heat flow of Mars (consistent with the low heat flow values deduced from lithosphere strength), unless heat-producing elements abundances for Mars are subchondritic.


Icarus | 2011

The thermal evolution of Mars as constrained by paleo-heat flows

Javier Ruiz; Patrick J. McGovern; Alberto Jiménez-Díaz; Valle López; Jean-Pierre Williams; Brian C. Hahn; Rosa Tejero


Journal of Geodynamics | 2012

The thermal state and strength of the lithosphere in the Spanish Central System and Tajo Basin from crustal heat production and thermal isostasy

Alberto Jiménez-Díaz; Javier Ruiz; Carlos Villaseca; Rosa Tejero; Ramón Capote


Earth and Planetary Science Letters | 2014

Spatial variations of effective elastic thickness of the lithosphere in Central America and surrounding regions

Alberto Jiménez-Díaz; Javier Ruiz; Marta Perez-Gussinye; Jon Kirby; José A. Álvarez-Gómez; Rosa Tejero; Ramón Capote


Tectonophysics | 2016

The Galicia–Ossa-Morena Zone: Proposal for a new zone of the Iberian Massif. Variscan implications

Ricardo Arenas; Rubén Díez Fernández; Francisco J. Rubio Pascual; Sonia Sánchez Martínez; Luis Miguel Martín Parra; J. Matas; José González del Tánago; Alberto Jiménez-Díaz; José Manuel Fuenlabrada; Pilar Andonaegui; Antonio García-Casco


Icarus | 2015

Lithospheric structure of Venus from gravity and topography

Alberto Jiménez-Díaz; Javier Ruiz; Jon Kirby; Ignacio Romeo; Rosa Tejero; Ramón Capote


Gondwana Research | 2017

Spatial variations in the effective elastic thickness of the lithosphere in Southeast Asia

Xiaobin Shi; Jon Kirby; Chuanhai Yu; Alberto Jiménez-Díaz; Junfeng Zhao


Icarus | 2017

Thrust fault modeling and Late-Noachian lithospheric structure of the circum-Hellas region, Mars

Isabel Egea-González; Alberto Jiménez-Díaz; Laura M. Parro; Valle López; Jean-Pierre Williams; Javier Ruiz


Primera Reunión Ibérica sobre Fallas Activas y Paleosismología, 2010 | 2010

Compilation of parameterized seismogenic sources in Iberia for the SHARE European-scale seismic source model

Eliza Nemser; Julián García-Mayordomo; João Cabral; Jorge Fonseca; José J. Martínez-Díaz; Pedro Alfaro García; José A. Álvarez-Gómez; Kuvvet Atakan; J. M. Azañón Hernández; R. Basili; G. M. Besana-Ostman; Mourad Bezzeghoud; José Fernando Borges; A. Brum da Silveira; F. Carlos Lopes; João P. F. Carvalho; Ruben P. Dias; Paula M. Figueiredo; M. García Fernández; Jorge Luis Giner-Robles; A. G. González; Eulàlia Gràcia; F. Gutiérrez; J. M. Insua Arévalo; Mauricio Jiménez; Alberto Jiménez-Díaz; P. Lafuente Tomás; P. Lucha; J. Madeira; F. Martín González


Icarus | 2018

Comments on “Using the viscoelastic relaxation of large impact craters to study the thermal history of Mars” (Karimi et al., 2016, Icarus 272, 102-113) and “Studying lower crustal flow beneath Mead basin: Implications for the thermal history and rheology of Venus” (Karimi and Dombard, 2017, Icarus 282, 34-39)

Javier Ruiz; Alberto Jiménez-Díaz; Isabel Egea-González; Laura M. Parro; Federico Mansilla

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Javier Ruiz

Complutense University of Madrid

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Rosa Tejero

Complutense University of Madrid

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Ramón Capote

Complutense University of Madrid

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Laura M. Parro

Complutense University of Madrid

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Federico Mansilla

Complutense University of Madrid

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Francisco J. Rubio Pascual

Instituto Geológico y Minero de España

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Isabel Egea-González

Spanish National Research Council

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J. Matas

Instituto Geológico y Minero de España

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José A. Álvarez-Gómez

Complutense University of Madrid

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