The Landau–Lifshitz (LL) equation, originally proposed at the macrospin level, is increasingly used in Atomistic Spin Dynamic (ASD) models. These models are based on a spin Hamiltonian featuring atomic spins of fixed length, with the exchange introduced using the Heisenberg formalism. ASD models are proving a powerful approach to the fundamental understanding of ultrafast magnetization dynamics, including the prediction of the thermally induced magnetization switching phenomenon in which the magnetization is reversed using an ultra-fast laser pulse in the absence of an externally applied field. This paper outlines the ASD model approach and considers the role and limitations of the LL equation in this context
This is the author accepted manuscript. The final version is available from IOP Publishing via the D...
so called Landau-Lifshitz system, which describes evolution of spin fields in continuum ferrimagneti...
The Landau-Lifshitz-Gilbert (LLG) equation is a fascinating nonlinear evolution equation both from m...
The Landau–Lifshitz (LL) equation, originally proposed at the macrospin level, is increasingly used ...
The Landau-Lifshitz (LL) equation, originally proposed at the macrospin level, is increasingly used ...
The Landau-Lifshitz (LL) equation, originally proposed at the macrospin level, is increasingly used ...
The purpose of this book is to provide a theoretical foundation and an understanding of atomistic sp...
The authors present a microscopic model that successfully explains the ultrafast equilibration of ma...
The Landau-Lifshitz-Gilbert (LLG) equation is widely used to describe magnetization dynamics. We dev...
The authors present a microscopic model that successfully explains the ultrafast equilibration of ma...
The influence of thermal excitations on magnetic materials is a topic of increasing relevance in the...
The authors present a microscopic model that successfully explains the ultrafast equilibration of ma...
The authors present a microscopic model that successfully explains the ultrafast equilibration of ma...
The authors present a microscopic model that successfully explains the ultrafast equilibration of ma...
Micromagnetic modeling has proved itself as a widely used tool, complimentary in many respects to ex...
This is the author accepted manuscript. The final version is available from IOP Publishing via the D...
so called Landau-Lifshitz system, which describes evolution of spin fields in continuum ferrimagneti...
The Landau-Lifshitz-Gilbert (LLG) equation is a fascinating nonlinear evolution equation both from m...
The Landau–Lifshitz (LL) equation, originally proposed at the macrospin level, is increasingly used ...
The Landau-Lifshitz (LL) equation, originally proposed at the macrospin level, is increasingly used ...
The Landau-Lifshitz (LL) equation, originally proposed at the macrospin level, is increasingly used ...
The purpose of this book is to provide a theoretical foundation and an understanding of atomistic sp...
The authors present a microscopic model that successfully explains the ultrafast equilibration of ma...
The Landau-Lifshitz-Gilbert (LLG) equation is widely used to describe magnetization dynamics. We dev...
The authors present a microscopic model that successfully explains the ultrafast equilibration of ma...
The influence of thermal excitations on magnetic materials is a topic of increasing relevance in the...
The authors present a microscopic model that successfully explains the ultrafast equilibration of ma...
The authors present a microscopic model that successfully explains the ultrafast equilibration of ma...
The authors present a microscopic model that successfully explains the ultrafast equilibration of ma...
Micromagnetic modeling has proved itself as a widely used tool, complimentary in many respects to ex...
This is the author accepted manuscript. The final version is available from IOP Publishing via the D...
so called Landau-Lifshitz system, which describes evolution of spin fields in continuum ferrimagneti...
The Landau-Lifshitz-Gilbert (LLG) equation is a fascinating nonlinear evolution equation both from m...