Vector spin chirality is one of the fundamental characteristics of complex magnets. For a one-dimensional spin-spiral state it can be interpreted as the handedness, or rotational sense of the spiral. Here, using spin-polarized scanning tunneling microscopy, we demonstrate the occurrence of an atomic-scale spin spiral in finite individual bi-atomic Fe chains on the (5×1)−Ir(001) surface. We show that the broken inversion symmetry at the surface promotes one direction of the vector spin chirality, leading to a unique rotational sense of the spiral in all chains. Correspondingly, changes in the spin direction of one chain end can be probed tens of nanometers away, suggesting a new way of transmitting information about the state of magnetic obj...
Electrically manipulating the quantum properties of nano-objects, such as atoms or molecules, is typ...
Magnetic ground states with peculiar spin textures, such as magnetic skyrmions and multifunctional d...
We investigated the low temperature helical magnetic structures in a thin plate of chiral magnet FeG...
Vector spin chirality is one of the fundamental characteristics of complex magnets. For a one-dimens...
Topologically protected magnetic structures provide a robust platform for low power consumption devi...
We calculate the effect of spin waves on the properties of finite-size spin chains with a chiral spi...
Chirality plays a major role in nature, from particle physics to DNA, and its control is much sought...
[EN] Nanomagnetism is nowadays expanding into three dimensions, triggered by the discovery of new ma...
Many low-dimensional systems, such as nanoscale islands, thin films, and multilayers, as well as bul...
Chiral spin textures are of considerable interest for applications in spintronics. It has recently b...
Chirality plays a major role in nature, from particle physics to DNA, and its control is much sought...
Electrically manipulating the quantum properties of nano-objects, such as atoms or molecules, is typ...
Magnetic ground states with peculiar spin textures, such as magnetic skyrmions and multifunctional d...
We investigated the low temperature helical magnetic structures in a thin plate of chiral magnet FeG...
Vector spin chirality is one of the fundamental characteristics of complex magnets. For a one-dimens...
Topologically protected magnetic structures provide a robust platform for low power consumption devi...
We calculate the effect of spin waves on the properties of finite-size spin chains with a chiral spi...
Chirality plays a major role in nature, from particle physics to DNA, and its control is much sought...
[EN] Nanomagnetism is nowadays expanding into three dimensions, triggered by the discovery of new ma...
Many low-dimensional systems, such as nanoscale islands, thin films, and multilayers, as well as bul...
Chiral spin textures are of considerable interest for applications in spintronics. It has recently b...
Chirality plays a major role in nature, from particle physics to DNA, and its control is much sought...
Electrically manipulating the quantum properties of nano-objects, such as atoms or molecules, is typ...
Magnetic ground states with peculiar spin textures, such as magnetic skyrmions and multifunctional d...
We investigated the low temperature helical magnetic structures in a thin plate of chiral magnet FeG...