The creation of molecule-like structures in which magnetic atoms interact controllably is full of potential for the study of complex or strongly correlated systems. Here, we create spin chains in which a strongly correlated Kondo state emerges from magnetic coupling of transition-metal atoms. We build chains up to ten atoms in length by placing Fe and Mn atoms on a Cu2N surface with a scanning tunneling microscope. The atoms couple antiferromagnetically via superexchange interaction through the nitrogen atom network of the surface. The emergent Kondo resonance is spatially distributed along the chain. Its strength can be controlled by mixing atoms of different transition metal elements and manipulating their spatial distribution. We show th...
The interaction among magnetic moments screened by conduction electrons drives quantum phase transit...
The magnetic properties of molecular structures can be tailored by chemical synthesis or bottom-up a...
Magnetism at low dimensions is a thriving field of research with exciting opportunities in technolog...
The creation of molecule-like structures in which magnetic atoms interact controllably is full of po...
The creation of molecule-like structures in which magnetic atoms interact controllably is full of po...
The creation of molecule-like structures in which magnetic atoms interact controllably is full of po...
Quantum entanglement permeates the complex ground states of correlated electron materials defying si...
Resumen del trabajo presentado al 1st Workshop Spain-Taiwan: "2D Materials and Interfaces for Spintr...
The spin state of single magnetic atoms and molecules at surfaces is of fundamental interest and may...
The interaction among magnetic moments screened by conduction electrons drives quantum phase transit...
The spin state of single magnetic atoms and molecules at surfaces is of fundamental interest and may...
The spin state of single magnetic atoms and molecules at surfaces is of fundamental interest and may...
Two magnetic atoms, one attached to the tip of a scanning tunnelling microscope and one adsorbed on ...
The delicate balance of spin-screening and spin-aligning interactions determines many of the pecu-li...
The magnetic properties of molecular structures can be tailored by chemical synthesis or bottom-up a...
The interaction among magnetic moments screened by conduction electrons drives quantum phase transit...
The magnetic properties of molecular structures can be tailored by chemical synthesis or bottom-up a...
Magnetism at low dimensions is a thriving field of research with exciting opportunities in technolog...
The creation of molecule-like structures in which magnetic atoms interact controllably is full of po...
The creation of molecule-like structures in which magnetic atoms interact controllably is full of po...
The creation of molecule-like structures in which magnetic atoms interact controllably is full of po...
Quantum entanglement permeates the complex ground states of correlated electron materials defying si...
Resumen del trabajo presentado al 1st Workshop Spain-Taiwan: "2D Materials and Interfaces for Spintr...
The spin state of single magnetic atoms and molecules at surfaces is of fundamental interest and may...
The interaction among magnetic moments screened by conduction electrons drives quantum phase transit...
The spin state of single magnetic atoms and molecules at surfaces is of fundamental interest and may...
The spin state of single magnetic atoms and molecules at surfaces is of fundamental interest and may...
Two magnetic atoms, one attached to the tip of a scanning tunnelling microscope and one adsorbed on ...
The delicate balance of spin-screening and spin-aligning interactions determines many of the pecu-li...
The magnetic properties of molecular structures can be tailored by chemical synthesis or bottom-up a...
The interaction among magnetic moments screened by conduction electrons drives quantum phase transit...
The magnetic properties of molecular structures can be tailored by chemical synthesis or bottom-up a...
Magnetism at low dimensions is a thriving field of research with exciting opportunities in technolog...