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个人简介
My work is in classical relativity, with applications to gravitational collapse, numerical relativity, black holes and neutron stars.
My PhD work was concerned with the quantisation of cosmological perturbations, with application to structure formation in inflation.
One of my long-term interests are critical phenomena in gravitational collapse: the time evolution of initial data that are close to the threshold of black hole formation show universality, self-similarity and critical exponents, in close mathematical analogy to a second-order (or critical) phase transition in statistical mechanics.
Another long-term interest is the development of mathematical formulations and numerical methods for numerical solutions of the Einstein equations (numerical relativity). I have made a major theoretical contribution to the first successful simulation, by Pretorius in 2005, of the merger of a binary system of black holes, the key expected source for the LIGO gravitational wave observatory. More recently, my research has focussed on matter (fluids, magnetic fields, elastic solids) in strong gravitational fields, motivated by the numerical simulation of neutron stars.
I have initiated the BritGrav series of annual conferences starting in 2001, and am organising a programme at ICMS in July 2011.
My PhD work was concerned with the quantisation of cosmological perturbations, with application to structure formation in inflation.
One of my long-term interests are critical phenomena in gravitational collapse: the time evolution of initial data that are close to the threshold of black hole formation show universality, self-similarity and critical exponents, in close mathematical analogy to a second-order (or critical) phase transition in statistical mechanics.
Another long-term interest is the development of mathematical formulations and numerical methods for numerical solutions of the Einstein equations (numerical relativity). I have made a major theoretical contribution to the first successful simulation, by Pretorius in 2005, of the merger of a binary system of black holes, the key expected source for the LIGO gravitational wave observatory. More recently, my research has focussed on matter (fluids, magnetic fields, elastic solids) in strong gravitational fields, motivated by the numerical simulation of neutron stars.
I have initiated the BritGrav series of annual conferences starting in 2001, and am organising a programme at ICMS in July 2011.
研究兴趣
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Physical review lettersno. 18 (2023): 181401
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OPTICS EXPRESSno. 23 (2023): 38840-38853
Shashank Vasudevan, Andrea Dotti,Janko Kajtez,Alberto Martínez-Serrano,Carsten Gundlach,Sandrina Campos Maçãs,Karin Lauschke,Anne-Marie Vinngaard, Silvia García López,Marta Pereira,Arto Heiskanen,Stephan S Keller,
Sina Baier-Stegmaier,Carsten Gundlach,Mariann Chriel,Mette Sif Hansen,Christina Vedel-Smith, Charlotte Vikkels Hansen,Daniel Klingberg Johansson, Louise Birgitte Henriksen,Magnus Wahlberg,Charlotte Bie Thstesen,Aage Kristian Olsen Alstrup,Kristian Murphy Gregersen,
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2023 IEEE International Ultrasonics Symposium (IUS)pp.1-4, (2023)
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Patrick Møller Jensen, Vedrana Andersen Dahl,Carsten Gundlach, Rebecca Engberg, Hans Martin Kjer, Anders Bjorholm Dahl
arxiv(2023)
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