Realization of novel topological phases in magnonic band structures represents a new opportunity for the development of spintronics and magnonics with low power consumption. In this work, we show that in antiparallelly aligned magnetic multilayers, the long-range, chiral dipolar interaction between propagating magnons generates bulk bands with nonzero Chern integers and magnonic surface states carrying chiral spin currents. The surface states are highly localized and can be easily toggled between nontrivial and trivial phases through an external magnetic field. The realization of chiral surface spin currents in this dipolarly coupled heterostructure represents a magnonic implementation of the coupled wire model that has been extensively exp...
We propose a magnon realization of 3D topological insulator in the AIII (chiral symmetry) topologica...
We study a simple magnetic system composed of periodically modulated magnetic dipoles with an easy a...
This is the author accepted manuscript. the final version is available from the American Institute o...
Realization of novel topological phases in magnonic band structures represents a new opportunity for...
The existence of magnetostatic surface spin waves in ferromagnets, known as the Damon-Eshbach mode, ...
We study the Kitaev-Heisenberg Gamma-Gamma model that describes the magnetism in spin-orbit coupled ...
As the spin excitation quanta in magnetic materials, the magnon is at the heart of the spintronics r...
The magnonic band structure of two-dimensional chiral magnonic crystals is theoretically investigate...
The plethora of recent discoveries in the field of topological electronic insulators has inspired a ...
Spin-wave technology (magnonics) has the potential to further reduce the size and energy consumption...
Condensed matter systems admit topological collective excitations above a trivial ground state, an e...
Spin-based electronics—spintronics—is a candidate technology for complementing or replacing traditio...
We study the behavior of electrons interacting with a classical magnetic background via a strong Hun...
Antiferromagnetic skyrmion crystals are magnetic phases predicted to exist in antiferromagnets with ...
We present a comprehensive study of strain-induced topological magnon phase transitions in insulatin...
We propose a magnon realization of 3D topological insulator in the AIII (chiral symmetry) topologica...
We study a simple magnetic system composed of periodically modulated magnetic dipoles with an easy a...
This is the author accepted manuscript. the final version is available from the American Institute o...
Realization of novel topological phases in magnonic band structures represents a new opportunity for...
The existence of magnetostatic surface spin waves in ferromagnets, known as the Damon-Eshbach mode, ...
We study the Kitaev-Heisenberg Gamma-Gamma model that describes the magnetism in spin-orbit coupled ...
As the spin excitation quanta in magnetic materials, the magnon is at the heart of the spintronics r...
The magnonic band structure of two-dimensional chiral magnonic crystals is theoretically investigate...
The plethora of recent discoveries in the field of topological electronic insulators has inspired a ...
Spin-wave technology (magnonics) has the potential to further reduce the size and energy consumption...
Condensed matter systems admit topological collective excitations above a trivial ground state, an e...
Spin-based electronics—spintronics—is a candidate technology for complementing or replacing traditio...
We study the behavior of electrons interacting with a classical magnetic background via a strong Hun...
Antiferromagnetic skyrmion crystals are magnetic phases predicted to exist in antiferromagnets with ...
We present a comprehensive study of strain-induced topological magnon phase transitions in insulatin...
We propose a magnon realization of 3D topological insulator in the AIII (chiral symmetry) topologica...
We study a simple magnetic system composed of periodically modulated magnetic dipoles with an easy a...
This is the author accepted manuscript. the final version is available from the American Institute o...