We theoretically analyze the spectrum of a magnetic molecule when its charge and spin can couple to the molecular vibrations. More specifically, we show that the interplay between charge-vibron and spin-vibron coupling leads to a renormalization of the magnetic anisotropy parameters of the molecule. This effect is discussed for a model device consisting of an individual magnetic molecule embedded in a junction. We study the transport properties of the device and illustrate how the differential conductance is affected by the vibrationally induced renormalization of the magnetic anisotropy. Depending on the total molecular spin and the bare (intrinsic) magnetic anisotropy, the induced modulation can lead to visible shifts and crossings in the...
We study spin-rotation effects in a magnetic molecule bridge d between two conducting leads. Dy- nam...
We study spin-rotation effects in a magnetic molecule bridge d between two conducting leads. Dy- nam...
Molecular spintronics devices (MSDs) attempt to harness molecules’ quantum state, size, and configur...
The effect of molecular vibrations on the tunnel magnetoresistance (TMR) of a mag- netic tunnel junc...
The effect of molecular vibrations on the tunnel magnetoresistance (TMR) of a mag- netic tunnel junc...
The electrical control and readout of molecular spin states are key for high-density storage. Expect...
The electrical control and readout of molecular spin states are key for high-density storage. Expect...
The electrical control and readout of molecular spin states are key for high-density storage. Expect...
Using numerical renormalization group calculations, we study\ud the effect of a vibrational mode on ...
Using numerical renormalization group calculations, we study the effect of a vibrational mode on the...
We investigate how the electron-vibron coupling influences electron transport via an anisotropic mag...
We investigate how the electron-vibron coupling influences electron transport via an anisotropic mag...
The electrical control and readout of molecular spin states are key for high-density storage. Expect...
We study electron transport through a single-molecule magnet (SMM) and the interplay of its anisotro...
We study spin-rotation effects in a magnetic molecule bridge d between two conducting leads. Dy- nam...
We study spin-rotation effects in a magnetic molecule bridge d between two conducting leads. Dy- nam...
We study spin-rotation effects in a magnetic molecule bridge d between two conducting leads. Dy- nam...
Molecular spintronics devices (MSDs) attempt to harness molecules’ quantum state, size, and configur...
The effect of molecular vibrations on the tunnel magnetoresistance (TMR) of a mag- netic tunnel junc...
The effect of molecular vibrations on the tunnel magnetoresistance (TMR) of a mag- netic tunnel junc...
The electrical control and readout of molecular spin states are key for high-density storage. Expect...
The electrical control and readout of molecular spin states are key for high-density storage. Expect...
The electrical control and readout of molecular spin states are key for high-density storage. Expect...
Using numerical renormalization group calculations, we study\ud the effect of a vibrational mode on ...
Using numerical renormalization group calculations, we study the effect of a vibrational mode on the...
We investigate how the electron-vibron coupling influences electron transport via an anisotropic mag...
We investigate how the electron-vibron coupling influences electron transport via an anisotropic mag...
The electrical control and readout of molecular spin states are key for high-density storage. Expect...
We study electron transport through a single-molecule magnet (SMM) and the interplay of its anisotro...
We study spin-rotation effects in a magnetic molecule bridge d between two conducting leads. Dy- nam...
We study spin-rotation effects in a magnetic molecule bridge d between two conducting leads. Dy- nam...
We study spin-rotation effects in a magnetic molecule bridge d between two conducting leads. Dy- nam...
Molecular spintronics devices (MSDs) attempt to harness molecules’ quantum state, size, and configur...