We develop a microscopic theory of spin-lattice interactions in magnetic insulators, separating rigid-body rotations and the internal angular momentum, or spin, of the phonons, while conserving the total angular momentum. In the low-energy limit, the microscopic couplings are mapped onto experimentally accessible magnetoelastic constants. We show that the transient phonon spin contribution of the excited system can dominate over the magnon spin, leading to nontrivial Einstein-de Haas physics.QN/Bauer Grou
We develop a theory for nonlocal spin transport through magnetic insulators that treats the coherent...
\u3cp\u3eWe develop a theory for nonlocal spin transport through magnetic insulators that treats the...
We develop a theory for nonlocal spin transport through magnetic insulators that treats the coherent...
We develop a microscopic theory of spin-lattice interactions in magnetic insulators, separating rigi...
We develop a microscopic theory of spin-lattice interactions in magnetic insulators, separating rigi...
We develop a microscopic theory of spin-lattice interactions in magnetic insulators, separating rigi...
We develop a microscopic theory of spin-lattice interactions in magnetic insulators, separating rigi...
We develop a microscopic theory of spin-lattice interactions in magnetic insulators, separating rigi...
We study the angular momentum of phonons in a magnetic crystal. In the presence of a spin-phonon int...
In spintronic materials, control and transport of magnetic order require a fundamental understanding...
5+11 pages, 1 figureThe Phonon Hall Viscosity is the leading term evincing time-reversal symmetry br...
Emergence of quasiparticles is a central concept in condensed matter physics. As an example, in soli...
We develop a theory for nonlocal spin transport through magnetic insulators that treats the coherent...
The magnon-phonon interaction is receiving growing attention due to its key role in spin caloritroni...
Emergence of quasiparticles is a central concept in condensed matter physics. As an example, in soli...
We develop a theory for nonlocal spin transport through magnetic insulators that treats the coherent...
\u3cp\u3eWe develop a theory for nonlocal spin transport through magnetic insulators that treats the...
We develop a theory for nonlocal spin transport through magnetic insulators that treats the coherent...
We develop a microscopic theory of spin-lattice interactions in magnetic insulators, separating rigi...
We develop a microscopic theory of spin-lattice interactions in magnetic insulators, separating rigi...
We develop a microscopic theory of spin-lattice interactions in magnetic insulators, separating rigi...
We develop a microscopic theory of spin-lattice interactions in magnetic insulators, separating rigi...
We develop a microscopic theory of spin-lattice interactions in magnetic insulators, separating rigi...
We study the angular momentum of phonons in a magnetic crystal. In the presence of a spin-phonon int...
In spintronic materials, control and transport of magnetic order require a fundamental understanding...
5+11 pages, 1 figureThe Phonon Hall Viscosity is the leading term evincing time-reversal symmetry br...
Emergence of quasiparticles is a central concept in condensed matter physics. As an example, in soli...
We develop a theory for nonlocal spin transport through magnetic insulators that treats the coherent...
The magnon-phonon interaction is receiving growing attention due to its key role in spin caloritroni...
Emergence of quasiparticles is a central concept in condensed matter physics. As an example, in soli...
We develop a theory for nonlocal spin transport through magnetic insulators that treats the coherent...
\u3cp\u3eWe develop a theory for nonlocal spin transport through magnetic insulators that treats the...
We develop a theory for nonlocal spin transport through magnetic insulators that treats the coherent...