© 2016, Springer Science+Business Media New York. In plasma simulations, where the speed of light divided by a characteristic length is at a much higher frequency than other relevant parameters in the underlying system, such as the plasma frequency, implicit methods begin to play an important role in generating efficient solutions in these multi-scale problems. Under conditions of scale separation, one can rescale Maxwell’s equations in such a way as to give a magneto static limit known as the Darwin approximation of electromagnetics. In this work, we present a new approach to solve Maxwell’s equations based on a Method of Lines Transpose (MOL T) formulation, combined with a fast summation method with computational complexity O(Nlog N) , wh...
The speed of iterative solvers for discretizations of partial differential equations (PDEs) is a sig...
Maxwell's equations from the 19th century and the almost equally old Lorentz force equation provide ...
International audienceIn many cases, the numerical resolution of Maxwell's equations is very expensi...
In plasma simulations, where the speed of light divided by a characteristic length is at a much high...
For many astrophysical and most magnetic fusion applications, the purely electromagnetic modes gener...
Maxwell's equations are the foundation of electromagnetics, its extensive applications make com...
A new type of mesh-free plasma simulation model is presented, capable of modelling particle systems ...
In many astrophysical and fusion applications the CFL stability condition implies strong computation...
This dissertation describes a new algorithm for simulating low frequency, kinetic phenomena in plasm...
The Darwin model of electromagnetic interaction is presented as a self-consistent theory, and is sho...
A new approach to Darwin or magnetoinductive plasma simulation is presented which combines a mesh-fr...
In this article, we design Asymptotic-Preserving Particle-In-Cell methods for the Vlasov-Maxwell sys...
International audienceWe derive and analyze an Asymptotic-Preserving scheme for the Euler-Maxwell sy...
AbstractWe consider the quasistatic and Darwin models of approximation of the time-dependent Maxwell...
International audienceWe present a new numerical method to solve the Vlasov-Darwin and Vlasov-Poissw...
The speed of iterative solvers for discretizations of partial differential equations (PDEs) is a sig...
Maxwell's equations from the 19th century and the almost equally old Lorentz force equation provide ...
International audienceIn many cases, the numerical resolution of Maxwell's equations is very expensi...
In plasma simulations, where the speed of light divided by a characteristic length is at a much high...
For many astrophysical and most magnetic fusion applications, the purely electromagnetic modes gener...
Maxwell's equations are the foundation of electromagnetics, its extensive applications make com...
A new type of mesh-free plasma simulation model is presented, capable of modelling particle systems ...
In many astrophysical and fusion applications the CFL stability condition implies strong computation...
This dissertation describes a new algorithm for simulating low frequency, kinetic phenomena in plasm...
The Darwin model of electromagnetic interaction is presented as a self-consistent theory, and is sho...
A new approach to Darwin or magnetoinductive plasma simulation is presented which combines a mesh-fr...
In this article, we design Asymptotic-Preserving Particle-In-Cell methods for the Vlasov-Maxwell sys...
International audienceWe derive and analyze an Asymptotic-Preserving scheme for the Euler-Maxwell sy...
AbstractWe consider the quasistatic and Darwin models of approximation of the time-dependent Maxwell...
International audienceWe present a new numerical method to solve the Vlasov-Darwin and Vlasov-Poissw...
The speed of iterative solvers for discretizations of partial differential equations (PDEs) is a sig...
Maxwell's equations from the 19th century and the almost equally old Lorentz force equation provide ...
International audienceIn many cases, the numerical resolution of Maxwell's equations is very expensi...