Based on numerical simulations, we demonstrate thermally induced magnetic switching in synthetic ferrimagnets composed of multilayers of rare-earth and transition metals. Our findings show that deterministic magnetization reversal occurs above a certain threshold temperature if the ratio of transition-metal atoms to rare-earth atoms is sufficiently large. Surprisingly, the total thickness of the multilayer system has little effect on the occurrence of switching. We further provide a simple argument to explain the temperature dependence of the reversal process.publishe
Ultrafast laser-induced magnetic switching in rare earth-transition metal ferrimagnetic alloys has r...
We experimentally demonstrate single-pulse all-optical switching in Pt/Co/Gd stacks using linearly p...
Ultrafast laser-induced magnetic switching in rare earth-transition metal ferrimagnetic alloys has r...
Based on numerical simulations, we demonstrate thermally induced magnetic switching in synthetic fer...
We present an experimental and theoretical investigation of all-optical switching by single femtosec...
We present an experimental and theoretical investigation of all-optical switching by single femtosec...
We present an experimental and theoretical investigation of all-optical switching by single femtosec...
We present an experimental and theoretical investigation of all-optical switching by single femtosec...
Synthetic ferrimagnets are composite magnetic structures formed from two or more anti-ferromagnetica...
Synthetic ferrimagnets are composite magnetic structures formed from two or more anti-ferromagnetica...
Synthetic ferrimagnets are composite magnetic structures formed from two or more anti-ferromagnetica...
Ultrafast laser-induced magnetic switching in rare earth-transition metal ferrimagnetic alloys has r...
Ultrafast laser-induced magnetic switching in rare earth-transition metal ferrimagnetic alloys has r...
Ultrafast laser-induced magnetic switching in rare earth-transition metal ferrimagnetic alloys has r...
All-optical switching of magnetization has great potential for use in future ultrafast and energy ef...
Ultrafast laser-induced magnetic switching in rare earth-transition metal ferrimagnetic alloys has r...
We experimentally demonstrate single-pulse all-optical switching in Pt/Co/Gd stacks using linearly p...
Ultrafast laser-induced magnetic switching in rare earth-transition metal ferrimagnetic alloys has r...
Based on numerical simulations, we demonstrate thermally induced magnetic switching in synthetic fer...
We present an experimental and theoretical investigation of all-optical switching by single femtosec...
We present an experimental and theoretical investigation of all-optical switching by single femtosec...
We present an experimental and theoretical investigation of all-optical switching by single femtosec...
We present an experimental and theoretical investigation of all-optical switching by single femtosec...
Synthetic ferrimagnets are composite magnetic structures formed from two or more anti-ferromagnetica...
Synthetic ferrimagnets are composite magnetic structures formed from two or more anti-ferromagnetica...
Synthetic ferrimagnets are composite magnetic structures formed from two or more anti-ferromagnetica...
Ultrafast laser-induced magnetic switching in rare earth-transition metal ferrimagnetic alloys has r...
Ultrafast laser-induced magnetic switching in rare earth-transition metal ferrimagnetic alloys has r...
Ultrafast laser-induced magnetic switching in rare earth-transition metal ferrimagnetic alloys has r...
All-optical switching of magnetization has great potential for use in future ultrafast and energy ef...
Ultrafast laser-induced magnetic switching in rare earth-transition metal ferrimagnetic alloys has r...
We experimentally demonstrate single-pulse all-optical switching in Pt/Co/Gd stacks using linearly p...
Ultrafast laser-induced magnetic switching in rare earth-transition metal ferrimagnetic alloys has r...