Diverse topological defects arise in hexagonal manganites, such as ferroelectric vortices, as well as neutral and charged domain walls. The topological defects are intriguing because their low symmetry enables unusual couplings between structural, charge, and spin degrees of freedom, holding great potential for novel types of functional 2D and 1D systems. Despite the considerable advances in analyzing the different topological defects in hexagonal manganites, the understanding of their key intrinsic properties is still rather limited and disconnected. In particular, a rapidly increasing number of structural variants is reported without clarifying their relation, leading to a zoo of seemingly unrelated topological textures. Here, we combine ...
Using first-principles calculations we examine the band structures of ferromagnetic hexagonal mangan...
Domain walls are attracting significant interest in the field of (multi-)ferroic materials owing to ...
Hexagonal rare-earth manganites and ferrites are well-known improper ferroelectrics with low-tempera...
Diverse topological defects arise in hexagonal manganites, such as ferroelectric vortices, as well a...
Topological defects in ordered states with spontaneously broken symmetry often have unusual physical...
Topological defects, such as domain walls and vortices, are pervasive in complex matter such as supe...
This dissertation seeks to understand ferroelectric domains, which can be viewed as networks of topo...
Field-induced switching of ferroelectric domains with a topological vortex configuration is studied ...
Perturbations in magnetically or electrically ordered materials can form stable defectsthat cannot b...
Topological vortices with complex domains and domain walls exist in hexagonal manganites, which unde...
The physical and chemical functionality of solids is defined, in many aspects, by spatial inhomogene...
Research on topological defects in hexagonal manganites exposed uncovered properties of topologicall...
Since their discovery in 1963 the hexagonal manganites have consolidated their role as exotic ferroe...
Since their discovery in 1963 the hexagonal manganites have consolidated their role as exotic ferroe...
In charge-ordered phases, broken translational symmetry emerges from couplings between charge, spin,...
Using first-principles calculations we examine the band structures of ferromagnetic hexagonal mangan...
Domain walls are attracting significant interest in the field of (multi-)ferroic materials owing to ...
Hexagonal rare-earth manganites and ferrites are well-known improper ferroelectrics with low-tempera...
Diverse topological defects arise in hexagonal manganites, such as ferroelectric vortices, as well a...
Topological defects in ordered states with spontaneously broken symmetry often have unusual physical...
Topological defects, such as domain walls and vortices, are pervasive in complex matter such as supe...
This dissertation seeks to understand ferroelectric domains, which can be viewed as networks of topo...
Field-induced switching of ferroelectric domains with a topological vortex configuration is studied ...
Perturbations in magnetically or electrically ordered materials can form stable defectsthat cannot b...
Topological vortices with complex domains and domain walls exist in hexagonal manganites, which unde...
The physical and chemical functionality of solids is defined, in many aspects, by spatial inhomogene...
Research on topological defects in hexagonal manganites exposed uncovered properties of topologicall...
Since their discovery in 1963 the hexagonal manganites have consolidated their role as exotic ferroe...
Since their discovery in 1963 the hexagonal manganites have consolidated their role as exotic ferroe...
In charge-ordered phases, broken translational symmetry emerges from couplings between charge, spin,...
Using first-principles calculations we examine the band structures of ferromagnetic hexagonal mangan...
Domain walls are attracting significant interest in the field of (multi-)ferroic materials owing to ...
Hexagonal rare-earth manganites and ferrites are well-known improper ferroelectrics with low-tempera...