The development of spintronic and quantum computing has inspired researchers to search for single-molecule magnets with stable structures that could be modulated repetitively. Modulation and utilization of the magnetic state of a single-molecule magnet is essential for quantum information manipulation. Moreover, in order to better design quantum information devices, it is important to explore the influence of the molecular structure on the spin center theoretically. In the present work, through density functional theory calculations, we systematically studied the spin-orbit coupling effect in the Cu-nickelocene-Cu magnetic molecular junction, and clarified the strain effect on the magnetic anisotropy energy (MAE) by developing the theoretic...
Single molecule magnets and single spin centres can be individually addressed when coupled to contac...
Electronic structure and intramolecular exchange constants are calculated for three cyanide-bridged ...
We investigate how the electron-vibron coupling influences electron transport via an anisotropic mag...
The field of molecular magnetism studies the magnetic properties of molecular systems as opposed to ...
Anisotropic magnetoresistance (AMR), originating from spin-orbit coupling (SOC), is the sensitivity ...
International audienceAnisotropic magnetoresistance (AMR), originating from spin-orbit coupling (SOC...
Molecular spintronics devices (MSDs) attempt to harness molecules’ quantum state, size, and configur...
Single-molecule magnets are perspective materials for molecular spintronic applications. Predictions...
The miniaturisation of semiconductors is running into physical limitations. In order to further enha...
Single-molecule magnets are perspective materials for molecular spintronic applications. Predictions...
Single molecule magnets and single spin centres can be individually addressed when coupled to contac...
We present here a theoretical approach to compute the molecular magnetic anisotropy parameters, D (M...
We present here a theoretical approach to compute the molecular magnetic anisotropy parameters, D (M...
Using numerical renormalization group calculations, we study\ud the effect of a vibrational mode on ...
Molecular spintronics aims to store and transmit information encoded in the electron spin using sing...
Single molecule magnets and single spin centres can be individually addressed when coupled to contac...
Electronic structure and intramolecular exchange constants are calculated for three cyanide-bridged ...
We investigate how the electron-vibron coupling influences electron transport via an anisotropic mag...
The field of molecular magnetism studies the magnetic properties of molecular systems as opposed to ...
Anisotropic magnetoresistance (AMR), originating from spin-orbit coupling (SOC), is the sensitivity ...
International audienceAnisotropic magnetoresistance (AMR), originating from spin-orbit coupling (SOC...
Molecular spintronics devices (MSDs) attempt to harness molecules’ quantum state, size, and configur...
Single-molecule magnets are perspective materials for molecular spintronic applications. Predictions...
The miniaturisation of semiconductors is running into physical limitations. In order to further enha...
Single-molecule magnets are perspective materials for molecular spintronic applications. Predictions...
Single molecule magnets and single spin centres can be individually addressed when coupled to contac...
We present here a theoretical approach to compute the molecular magnetic anisotropy parameters, D (M...
We present here a theoretical approach to compute the molecular magnetic anisotropy parameters, D (M...
Using numerical renormalization group calculations, we study\ud the effect of a vibrational mode on ...
Molecular spintronics aims to store and transmit information encoded in the electron spin using sing...
Single molecule magnets and single spin centres can be individually addressed when coupled to contac...
Electronic structure and intramolecular exchange constants are calculated for three cyanide-bridged ...
We investigate how the electron-vibron coupling influences electron transport via an anisotropic mag...