Micro- and nanoelectromechanical systems (MEMS and NEMS), which combine electronics with miniature-size mechanical devices, are essential components of modern technology. It is the mathematical model describing "electrostatically actuated" MEMS that is addressed in this monograph. Even the simplified models that the authors deal with still lead to very interesting second- and fourth-order nonlinear elliptic equations (in the stationary case) and to nonlinear parabolic equations (in the dynamic case). While nonlinear eigenvalue problems-where the stationary MEMS models fit-are a well-develope
Well-posedness of a free boundary problem for electrostatic microelectromechanical systems (MEMS) is...
Abstract. We show among other things, that for small voltage, the stable solution of the basic nonli...
The evolution problem for a membrane based model of an electrostatically actuated microelectromechan...
Abstract. In this paper, we study nonlinear equation arising in MEMS modeling electrostatic actuatio...
AbstractIn this paper we study the nonlinear problem arising in electrostatic actuation of MEMS. We ...
The mathematical modeling and analysis of electrostatically actuated micro- and nanoelectromechanica...
Micro-Electromechanical Systems (MEMS) combine electronics with micro-size mechanical devices in the...
We present an explicit formulation for the Jacobian (or tan-gent) matrix of the discretized non-line...
MEMS physics is characterized by multi-fields interactions. In this paper, a fully integrated method...
AbstractThis paper is a continuation of [N. Ghoussoub, Y. Guo, On the partial differential equations...
The study of the nonlinear dynamics of electrostatically actuated MEMS devices is essential for prop...
Microelectromechanical systems (MEMS) combine high levels sensitivity and multifunctionality with sm...
We consider fourth order nonlinear problems which describe electrostatic actuation in MicroElectroMe...
This paper addresses the compact modeling of MEMS devices with nonlinear electromechanical forces. I...
This paper concerns the modelling of the strong electro-mechanical coupling appearing in micro-elect...
Well-posedness of a free boundary problem for electrostatic microelectromechanical systems (MEMS) is...
Abstract. We show among other things, that for small voltage, the stable solution of the basic nonli...
The evolution problem for a membrane based model of an electrostatically actuated microelectromechan...
Abstract. In this paper, we study nonlinear equation arising in MEMS modeling electrostatic actuatio...
AbstractIn this paper we study the nonlinear problem arising in electrostatic actuation of MEMS. We ...
The mathematical modeling and analysis of electrostatically actuated micro- and nanoelectromechanica...
Micro-Electromechanical Systems (MEMS) combine electronics with micro-size mechanical devices in the...
We present an explicit formulation for the Jacobian (or tan-gent) matrix of the discretized non-line...
MEMS physics is characterized by multi-fields interactions. In this paper, a fully integrated method...
AbstractThis paper is a continuation of [N. Ghoussoub, Y. Guo, On the partial differential equations...
The study of the nonlinear dynamics of electrostatically actuated MEMS devices is essential for prop...
Microelectromechanical systems (MEMS) combine high levels sensitivity and multifunctionality with sm...
We consider fourth order nonlinear problems which describe electrostatic actuation in MicroElectroMe...
This paper addresses the compact modeling of MEMS devices with nonlinear electromechanical forces. I...
This paper concerns the modelling of the strong electro-mechanical coupling appearing in micro-elect...
Well-posedness of a free boundary problem for electrostatic microelectromechanical systems (MEMS) is...
Abstract. We show among other things, that for small voltage, the stable solution of the basic nonli...
The evolution problem for a membrane based model of an electrostatically actuated microelectromechan...