The magnetic moment of a single-domain nanoparticle can be effectively switched on an ultrashort time scale by means of oscillating (microwave) magnetic fields. This switching technique can be further improved by using fields with time-dependent frequency (autoresonance). Here, we provide a full theoretical framework for the autoresonant switching technique, by exploiting the analogy between the magnetization state of an isolated nanoparticle and a two-level quantum system, whereby the switching process can be interpreted as a population transfer. We derive analytical expressions for the threshold amplitude of the microwave field, with and without damping, and consider the effect of thermal fluctuations. Comparisons with numerical simulatio...
We study the effect of an elliptically polarized magnetic field on a system of non-interacting, sin...
We study the thermal stability of the periodic (P) and quasiperiodic (Q) precessional modes of the n...
We have performed a numerical simulation of magnetization switching and oscillations in a ferromagne...
The ability to control the magnetization switching in nanoscale devices is a crucial step for the de...
We present a comprehensive study of the magnetization switching of a uniaxial nanoparticle driven b...
We report numerical and analytical studies of the reversal of the magnetic moment of a single- domai...
The investigation of a sizable thermal enhancement of magnetization is put forward for uniaxial fer...
Un magnétomètre microSQUID basse température couplé à une antenne micro-onde a été utilisé pour sond...
A low temperature microSQUID magnetometer coupled to a microwave antenna was used to probe the assis...
The autoresonant approach to excitation and control of large-amplitude uniformly precessing magnetiz...
Computational and experimental results of thermally induced magnetization reversal in single-domain ...
The switching process of a uniformly magnetized magnetic nanoparticle is considered. The particle is...
Energy-efficient switching of magnetization is a central problem in nonvolatile magnetic storage and...
Dans ce travail, nous étudions l'effet d'un champ magnétique dépendant du temps sur le retournement ...
We study, both analytically and numerically, the phenomenon of energy dissipation in single-domain ...
We study the effect of an elliptically polarized magnetic field on a system of non-interacting, sin...
We study the thermal stability of the periodic (P) and quasiperiodic (Q) precessional modes of the n...
We have performed a numerical simulation of magnetization switching and oscillations in a ferromagne...
The ability to control the magnetization switching in nanoscale devices is a crucial step for the de...
We present a comprehensive study of the magnetization switching of a uniaxial nanoparticle driven b...
We report numerical and analytical studies of the reversal of the magnetic moment of a single- domai...
The investigation of a sizable thermal enhancement of magnetization is put forward for uniaxial fer...
Un magnétomètre microSQUID basse température couplé à une antenne micro-onde a été utilisé pour sond...
A low temperature microSQUID magnetometer coupled to a microwave antenna was used to probe the assis...
The autoresonant approach to excitation and control of large-amplitude uniformly precessing magnetiz...
Computational and experimental results of thermally induced magnetization reversal in single-domain ...
The switching process of a uniformly magnetized magnetic nanoparticle is considered. The particle is...
Energy-efficient switching of magnetization is a central problem in nonvolatile magnetic storage and...
Dans ce travail, nous étudions l'effet d'un champ magnétique dépendant du temps sur le retournement ...
We study, both analytically and numerically, the phenomenon of energy dissipation in single-domain ...
We study the effect of an elliptically polarized magnetic field on a system of non-interacting, sin...
We study the thermal stability of the periodic (P) and quasiperiodic (Q) precessional modes of the n...
We have performed a numerical simulation of magnetization switching and oscillations in a ferromagne...