Motivated by the important role of the normalized second-order coherence function, often called g^{(2)}, in the field of quantum optics, we propose a method to determine magnon coherence in solid-state devices. Namely, we show that the cross-correlations of pure spin currents injected by a ferromagnet into two metal leads, normalized by their dc value, replicate the behavior of g^{(2)} when magnons are driven far from equilibrium. We consider two scenarios: driving by ferromagnetic resonance, which leads to the coherent occupation of a single mode, and driving by heating of the magnons, which leads to an excess of incoherent magnons. We find an enhanced normalized cross-correlation in the latter case, thereby demonstrating bunching of noneq...
We investigate the correlations of magnons inside a nanomagnet and identify a regime of parameters w...
We investigate the correlations of magnons inside a nanomagnet and identify a regime of parameters w...
In this dissertation, we examine quantum ferromagnets and determine various effects of the magnetic ...
Motivated by the important role of the normalized second-order coherence function, often called g(2)...
Motivated by the important role of the normalized second-order coherence function, often called g(2)...
Motivated by the important role of the normalized second-order coherence function, often called g(2)...
Motivated by the important role of the normalized second-order coherence function, often called g(2)...
Motivated by the important role of the normalized second-order coherence function, often called g(2)...
Motivated by the important role of the normalized second order coherence function, often called g(2)...
Motivated by the important role of the normalized second-order coherence function, often called g^{(...
Motivated by the important role of the normalized second-order coherence function, often called g^{(...
Motivated by the important role of the normalized second-order coherence function, often called g^{(...
Motivated by the important role of the normalized second-order coherence function, often called g^{(...
The dynamics and thermal equilibrium of spin waves (magnons) in a quantum ferromagnet as well as the...
The dynamics and thermal equilibrium of spin waves (magnons) in a quantum ferromagnet as well as the...
We investigate the correlations of magnons inside a nanomagnet and identify a regime of parameters w...
We investigate the correlations of magnons inside a nanomagnet and identify a regime of parameters w...
In this dissertation, we examine quantum ferromagnets and determine various effects of the magnetic ...
Motivated by the important role of the normalized second-order coherence function, often called g(2)...
Motivated by the important role of the normalized second-order coherence function, often called g(2)...
Motivated by the important role of the normalized second-order coherence function, often called g(2)...
Motivated by the important role of the normalized second-order coherence function, often called g(2)...
Motivated by the important role of the normalized second-order coherence function, often called g(2)...
Motivated by the important role of the normalized second order coherence function, often called g(2)...
Motivated by the important role of the normalized second-order coherence function, often called g^{(...
Motivated by the important role of the normalized second-order coherence function, often called g^{(...
Motivated by the important role of the normalized second-order coherence function, often called g^{(...
Motivated by the important role of the normalized second-order coherence function, often called g^{(...
The dynamics and thermal equilibrium of spin waves (magnons) in a quantum ferromagnet as well as the...
The dynamics and thermal equilibrium of spin waves (magnons) in a quantum ferromagnet as well as the...
We investigate the correlations of magnons inside a nanomagnet and identify a regime of parameters w...
We investigate the correlations of magnons inside a nanomagnet and identify a regime of parameters w...
In this dissertation, we examine quantum ferromagnets and determine various effects of the magnetic ...