Cordier obtained a master's degree in materials science in 1985 from the School of Engineers of Lille (EUDIL),[4] and a DEA from the University of Lille 1[5] in materials science. He completed a doctoral thesis on the plasticity of quartz, directed by Professor Jean-Claude Doukhan, at the University of Lille 1[5] in 1989.
Early career
In 1989, Cordier worked as post-doctoral scientist with Professor Arthur Heuer (Department of Materials Science and Engineering, Case School of Engineering, Cleveland, USA).[6] The same year, he joined the University of Lille 1 as an assistant professor.[5] He passed his habilitation to lead scientific research in 1995 at Lille, and became an associate professor of physics in 1996. At the 'Unité Materiaux Transformations' research institute of the University of Lille, he led the research group for Mineral Physics from 1999 to 2017, and the research group for Plasticity from 2017 to 2020.[7]
Current research
Cordier is a specialist in transmission electron microscopy and has devoted himself particularly to the study of crystal defects such as dislocations and the plasticity of minerals. In particular, he studies the plasticity of the high-pressure mineral phases of the Earth's mantle. With Philippe Carrez, he is currently developing an approach to this problem based on multi-scale numerical modelling.
He has regularly visited at the Bayerisches Geoinstitut[8] (Bayreuth, Germany) at the University of Bayreuth since 1998 to carry out deformation experiments at very high pressures and is presently a visiting professor at the Institute of Mechanics, Materials and Civil Engineering of the Université Catholique de Louvain, Belgium.
Honors
Cordier has received French recognition for distinguished service in education (Ordre des Palmes Académiques, Chevalier in 2008; Officier in 2013), and the Grand Prix Frédéric Kuhlmann of the Société des Sciences, de l’Agriculture et des Arts de Lille (SSAAL) in 2015.[9][circular reference]
In 2019, he became the first French fellow of the American Geophysical Union in the focus group 'Mineral and Rock Physics'.[10] The same year he was elected at Institut Universitaire de France as a senior member.
He is the current president (2018–2020) of the International Mineralogical Association (IMA).[11] He has also served as the first vice-president (2016–2018) of the IMA,[11] and the vice-president (2004–2007) and president (2008–2009) of the French Mineralogical Society (Société Française de Minéralogie et Cristallographie).[12]
He has twice received ERC-Adv grants, for the projects RheoMan (2011–2017)[13] and TimeMan (2018–2022).[14]
2008: P. Cordier, Ce que disent les minéraux, (Ed. Belin)[16]
2010: P. Cordier, Mineralen (Ed. Veen Magazines, Diemen)[17]
2016 - A.M. Goryaeva, Ph. Carrez & P. Cordier, Low viscosity and high attenuation in MgSiO3 post-perovskite inferred from atomicscale calculations. Scientific Reports, 6, 34771.[18]
2014 - P. Cordier, S. Demouchy, B. Beausir, V. Taupin, F. Barou & C. Fressengeas, Disclinations provide the missing mechanism for deforming olivine-rich rocks in the mantle. Nature, 507, 51–56.[19]
2012 - P. Cordier, J. Amodeo & Ph. Carrez, Modelling the rheology of MgO under Earth's mantle pressure, temperature and strain-rates. Nature, 481, 177–180.[20]
2007 - Ph. Carrez, D. Ferré & P. Cordier, Implications for plastic flow in the deep mantle from modelling dislocations in MgSiO3 minerals. Nature, 446(7131), 68–70.[21]
2005 - D. Mainprice, A. Tommasi, H. Couvy, P. Cordier & D. Frost, Pressure sensitivity of olivine slip systems and seismic anisotropy of Earth's upper mantle. Nature, 433, 731–733.[22]
2004 - P. Cordier, T. Ungár, L. Zsoldos & G. Tichy, Dislocation creep in MgSiO3 Perovskite at conditions of the Earth's uppermost lower mantle. Nature, 428, 837–840.[23]
References
^ ab"Dana Medal". Mineralogical Society of America. December 30, 1919. Retrieved 4 January 2018.