Emmanuel Witrant
University of Grenoble
160 Papers
1.4K Citations
Emmanuel Witrant is an academic researcher from University of Grenoble. The author has contributed to research in topics: Firn & Tokamak. The author has an hindex of 29, co-authored 154 publications. Previous affiliations of Emmanuel Witrant include Joseph Fourier University & Université libre de Bruxelles.
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Papers
Eemian interglacial reconstructed from a Greenland folded ice core
Dorthe Dahl-Jensen,Mary R. Albert,Ala Aldahan,Nobuhiko Azuma,David Balslev-Clausen,Matthias Baumgartner,Ann-Marie Berggren,Matthias Bigler,Tobias Binder,Thomas Blunier,J. C. Bourgeois,Edward J. Brook,Susanne L Buchardt,Christo Buizert,Emilie Capron,Jérôme A Chappellaz,J. Chung,Henrik Clausen,Ivana Cvijanovic,Siwan M. Davies,Peter D. Ditlevsen,Olivier Eicher,Hubertus Fischer,David A. Fisher,L. G. Fleet,Gideon Gfeller,Vasileios Gkinis,Sivaprasad Gogineni,Kumiko Goto-Azuma,Aslak Grinsted,H. Gudlaugsdottir,Myriam Guillevic,S. B. Hansen,Martin Hansson,Motohiro Hirabayashi,S. Hong,S. D. Hur,Philippe Huybrechts,Christine S. Hvidberg,Yoshinori Iizuka,Theo M. Jenk,Sigfus J Johnsen,Tyler R. Jones,Jean Jouzel,Nanna B. Karlsson,Kenji Kawamura,Kaitlin M. Keegan,E. Kettner,Sepp Kipfstuhl,Helle Astrid Kjær,Michelle Koutnik,Takayuki Kuramoto,Peter Köhler,Thomas Laepple,Amaelle Landais,Peter L. Langen,L. B. Larsen,Daiana Leuenberger,Markus Leuenberger,Carl Leuschen,J. Li,Vladimir Ya. Lipenkov,Patricia Martinerie,Olivia J. Maselli,Valérie Masson-Delmotte,Joseph R. McConnell,Heinrich Miller,Olivia Mini,A. Miyamoto,M. Montagnat-Rentier,Robert Mulvaney,Raimund Muscheler,Anais Orsi,John Paden,Christian Panton,Frank Pattyn,Jean-Robert Petit,K. Pol,Trevor Popp,G. Possnert,Frédéric Prié,M. Prokopiou,Aurélien Quiquet,Sune Olander Rasmussen,Dominique Raynaud,J. Ren,C. Reutenauer,Catherine Ritz,Thomas Röckmann,Jean Rosen,Mauro Rubino,Oleg Rybak,Denis Samyn,Célia Sapart,Adrian Schilt,A. Schmidt,Jakob Schwander,Simon Schüpbach,Inger K Seierstad,Jeffrey P. Severinghaus,Simon G. Sheldon,Sebastian B. Simonsen,Jesper Sjolte,Anne M. Solgaard,Todd Sowers,Peter Sperlich,Hans Christian Steen-Larsen,Konrad Steffen,J. P. Steffensen,Daniel Steinhage,Thomas F. Stocker,C. Stowasser,A. S. Sturevik,W. T. Sturges,Arny E. Sveinbjörnsdottir,A. Svensson,Jean-Louis Tison,J. Uetake,Paul Vallelonga,R. S. W. van de Wal,G. van der Wel,Bruce H. Vaughn,Bo Møllesøe Vinther,E. Waddington,Anna Wegner,Ilka Weikusat,James W. C. White,Frank Wilhelms,Mai Winstrup,Emmanuel Witrant,Eric W. Wolff,C. Xiao,J. Zheng +132 more
TL;DR: In this paper, the North Greenland Eemian Ice Drilling (NEEM) ice core was extracted from folded Greenland ice using globally homogeneous parameters known from dated Greenland and Antarctic ice-core records.
Eemian interglacial reconstructed from a Greenland folded ice core (SCI)
Dorthe Dahl-Jensen,Mary R. Albert,Ala Aldahan,Nobuhiko Azuma,David Balslev-Clausen,Matthias Baumgartner,Ann-Marie Berggren,Matthias Bigler,Tobias Binder,Thomas Blunier,J. C. Bourgeois,Edward J. Brook,Susanne L Buchardt,Christo Buizert,Emilie Capron,Jérôme A Chappellaz,J. Chung,Henrik Clausen,Ivana Cvijanovic,Siwan M. Davies,Peter D. Ditlevsen,Olivier Eicher,Hubertus Fischer,David A. Fisher,L. G. Fleet,Gideon Gfeller,Vasileios Gkinis,Sivaprasad Gogineni,Kumiko Goto-Azuma,Aslak Grinsted,H. Gudlaugsdottir,Myriam Guillevic,S. B. Hansen,Martin Hansson,Motohiro Hirabayashi,S. Hong,S. D. Hur,Philippe Huybrechts,Christine S. Hvidberg,Yoshinori Iizuka,Theo M. Jenk,Sigfus J Johnsen,Tyler R. Jones,Jean Jouzel,Nanna B. Karlsson,Kenji Kawamura,Kaitlin M. Keegan,E. Kettner,Sepp Kipfstuhl,Helle Astrid Kjær,Michelle Koutnik,Takayuki Kuramoto,Peter Köhler,Thomas Laepple,Amaelle Landais,Peter L. Langen,L. B. Larsen,Daiana Leuenberger,Markus Leuenberger,Carl Leuschen,J. Li,Vladimir Ya. Lipenkov,Patricia Martinerie,Olivia J. Maselli,Valérie Masson-Delmotte,Joseph R. McConnell,Heinrich Miller,Olivia Mini,A. Miyamoto,M. Montagnat-Rentier,Robert Mulvaney,Raimund Muscheler,Anais Orsi,John Paden,Christian Panton,Frank Pattyn,Jean-Robert Petit,K. Pol,Trevor Popp,G. Possnert,Frédéric Prié,M. Prokopiou,Aurélien Quiquet,Sune Olander Rasmussen,Dominique Raynaud,J. Ren,C. Reutenauer,Catherine Ritz,Thomas Röckmann,Jean Rosen,Mauro Rubino,Oleg Rybak,Denis Samyn,Célia Sapart,Adrian Schilt,A. Schmidt,Jakob Schwander,Simon Schüpbach,Inger K Seierstad,Jeffrey P. Severinghaus,Simon G. Sheldon,Sebastian B. Simonsen,Jesper Sjolte,Anne M. Solgaard,Todd Sowers,Peter Sperlich,Hans Christian Steen-Larsen,Konrad Steffen,J. P. Steffensen,Daniel Steinhage,Thomas F. Stocker,C. Stowasser,A. S. Sturevik,W. T. Sturges,Arny E. Sveinbjörnsdottir,A. Svensson,Jean-Louis Tison,J. Uetake,Paul Vallelonga,R. S. W. van de Wal,G. van der Wel,Bruce H. Vaughn,Bo Møllesøe Vinther,E. Waddington,Anna Wegner,Ilka Weikusat,James W. C. White,Frank Wilhelms,Mai Winstrup,Emmanuel Witrant,Eric W. Wolff,C. Xiao,J. Zheng,N Community +133 more
- 01 Jan 2013
TL;DR: The new North Greenland Eemian Ice Drilling (‘NEEM’) ice core is presented and shows only a modest ice-sheet response to the strong warming in the early Eemians, which was probably driven by the decreasing summer insolation.
451
A Strict Control Lyapunov Function for a Diffusion Equation With Time-Varying Distributed Coefficients
TL;DR: A strict Lyapunov function is developed in order to show the exponential stability and input-to-state stability (ISS) properties of a diffusion equation for nonhomogeneous media and derive a control law to preserve the ISS properties of the system and improve its performance.
113
Boundary observers for linear and quasi-linear hyperbolic systems with application to flow control
TL;DR: This paper derives some sufficient conditions for exponential boundary observer design using only the information from the boundary control and the boundary conditions by means of Lyapunov based techniques.
109
Compositional Abstraction and Safety Synthesis Using Overlapping Symbolic Models
TL;DR: In this article, a compositional approach to abstraction and safety synthesis for a general class of discrete-time nonlinear systems is presented, which makes it possible to define a symbolic abstraction by composing a set of symbolic subsystems that are overlapping in the sense that they share some common state variables.
107