We theoretically explore nonlinearities of ferromagnets in microwave cavities in the classical and quantum regimes and assess the resources for quantum information, i.e., fluctuation squeezing and bipartite entanglement. The (semi)classical analysis of the anharmonic oscillator (Duffing) model for the Kittel mode when including all other magnon modes, reveals chaotic and limit-cycle phases that do not survive in quantum calculations. However, magnons with nonzero wave numbers that are driven by the Suhl instability of the Kittel mode, form a genuine limit cycle. We subsequently compute bounds for the distillable entanglement, as well as entanglement of formation for the bipartite configurations of the mixed magnon modes. The former vanishes...
Continuous variable entanglement between magnon modes in Heisenberg antiferromagnets with Dzyaloshin...
We present a scheme to generate distant bipartite and tripartite entanglement between an atomic ense...
We propose and numerically evaluate a protocol to generate an arbitrary quantum state of the magneti...
We theoretically explore nonlinearities of ferromagnets in microwave cavities in the classical and q...
Quantum magnonics is an emerging research field, with great potential for applications in magnon bas...
We investigate the parameter estimation in a magnon–cavity–magnon coupled system. PT symmetrical two...
Collective magnetic excitation modes, magnons, can be coherently coupled to microwave photons in the...
Cavity magnonics deals with the interaction of magnons — elementary excitations in magnetic material...
We present a scheme to entangle the vibrational phonon modes of two massive ferromagnetic spheres in...
The explosive development of quantum magnonics requires the consideration of several previously know...
We report strong chiral coupling between magnons and photons in microwave waveguides that contain ch...
We experimentally and theoretically demonstrate that nonlinear spin-wave interactions suppress the h...
Level attraction is a type of mode hybridization in open systems where instead of forming a hybridiz...
The bipartite entanglement across the magnetization process of a highly frustrated spin-1/2 Heisenbe...
Extensive efforts have been expended in developing hybrid quantum systems to overcome the short cohe...
Continuous variable entanglement between magnon modes in Heisenberg antiferromagnets with Dzyaloshin...
We present a scheme to generate distant bipartite and tripartite entanglement between an atomic ense...
We propose and numerically evaluate a protocol to generate an arbitrary quantum state of the magneti...
We theoretically explore nonlinearities of ferromagnets in microwave cavities in the classical and q...
Quantum magnonics is an emerging research field, with great potential for applications in magnon bas...
We investigate the parameter estimation in a magnon–cavity–magnon coupled system. PT symmetrical two...
Collective magnetic excitation modes, magnons, can be coherently coupled to microwave photons in the...
Cavity magnonics deals with the interaction of magnons — elementary excitations in magnetic material...
We present a scheme to entangle the vibrational phonon modes of two massive ferromagnetic spheres in...
The explosive development of quantum magnonics requires the consideration of several previously know...
We report strong chiral coupling between magnons and photons in microwave waveguides that contain ch...
We experimentally and theoretically demonstrate that nonlinear spin-wave interactions suppress the h...
Level attraction is a type of mode hybridization in open systems where instead of forming a hybridiz...
The bipartite entanglement across the magnetization process of a highly frustrated spin-1/2 Heisenbe...
Extensive efforts have been expended in developing hybrid quantum systems to overcome the short cohe...
Continuous variable entanglement between magnon modes in Heisenberg antiferromagnets with Dzyaloshin...
We present a scheme to generate distant bipartite and tripartite entanglement between an atomic ense...
We propose and numerically evaluate a protocol to generate an arbitrary quantum state of the magneti...