17 pages, 4 figuresInternational audienceElectric control of magnetism is a prerequisite for efficient and low power spintronic devices. More specifically, in heavy metal/ ferromagnet/ insulator heterostructures, voltage gating has been shown to locally and dynamically tune magnetic properties like interface anisotropy and saturation magnetization. However, its effect on interfacial Dzyaloshinskii-Moriya Interaction (DMI), which is crucial for the stability of magnetic skyrmions, has been challenging to achieve and has not been reported yet for ultrathin films. Here, we demonstrate 130% variation of DMI with electric field in Ta/FeCoB/TaOx trilayers through Brillouin Light Spectroscopy (BLS). Using polar- Magneto-Optical-Kerr-Effect microsc...
In this dissertation, we investigate the stabilization and dynamics of chiral domain walls and skyrm...
The stabilization of chiral magnetic spin-structures in thin films is often attributed to the interf...
The stabilization of chiral magnetic spin structures in thin films is often attributed to the interf...
17 pages, 4 figuresInternational audienceElectric control of magnetism is a prerequisite for efficie...
Electric control of magnetism is a prerequisite for efficient and low-power spintronic devices. More...
Skyrmions are magnetic bubbles with nontrivial topology envisioned as data bits for ultrafast and po...
Control of interfacial magnetism has emerged to be of paramount importance for spintronics applicati...
International audienceUsing first-principles calculations, we demonstrate several approaches to cont...
The Dzyaloshinskii-Moriya interaction (DMI) is an antisymmetric exchange interaction that stabilizes...
The search for chiral magnetic textures in systems lacking spatial inversion symmetry has attracted ...
Magnetization dynamics driven by an electric field could provide long-term benefits to information t...
The electric field is an energy-efficient tool that can be leveraged to control spin-orbit coupling....
In this dissertation, we investigate the stabilization and dynamics of chiral domain walls and skyrm...
The stabilization of chiral magnetic spin-structures in thin films is often attributed to the interf...
The stabilization of chiral magnetic spin structures in thin films is often attributed to the interf...
17 pages, 4 figuresInternational audienceElectric control of magnetism is a prerequisite for efficie...
Electric control of magnetism is a prerequisite for efficient and low-power spintronic devices. More...
Skyrmions are magnetic bubbles with nontrivial topology envisioned as data bits for ultrafast and po...
Control of interfacial magnetism has emerged to be of paramount importance for spintronics applicati...
International audienceUsing first-principles calculations, we demonstrate several approaches to cont...
The Dzyaloshinskii-Moriya interaction (DMI) is an antisymmetric exchange interaction that stabilizes...
The search for chiral magnetic textures in systems lacking spatial inversion symmetry has attracted ...
Magnetization dynamics driven by an electric field could provide long-term benefits to information t...
The electric field is an energy-efficient tool that can be leveraged to control spin-orbit coupling....
In this dissertation, we investigate the stabilization and dynamics of chiral domain walls and skyrm...
The stabilization of chiral magnetic spin-structures in thin films is often attributed to the interf...
The stabilization of chiral magnetic spin structures in thin films is often attributed to the interf...