arXiv · 1210.5220
Parity effect in ground state localization of antiferromagnetic chains coupled to a ferromagnet
Abstract
We investigate the ground states of antiferromagnetic Mn nanochains on Ni(110) by spin-polarized scanning tunneling microscopy in combination with theory. While the ferrimagnetic linear trimer experimentally shows the predicted collinear classical ground state, no magnetic contrast was observed for dimers and tetramers where non-collinear structures were expected based on ab-initio theory. This striking observation can be explained by zero-point energy motion for even numbered chains derived within a classical equation of motion leading to non classical ground states. Thus, depending on the parity of the chain length, the system shows a classical or a quantum behavior.
Explore related subjects
Keep this discovery
Simon Holzberger, Tobias Schuh, Stefan Blügel, Samir Lounis, Wulf Wulfhekel. 2012-10-18. Parity effect in ground state localization of antiferromagnetic chains coupled to a ferromagnet. https://doi.org/10.1103/physrevlett.110.157206
Cite the original work for its findings. Save a collection to share your selection of sources.