There has been a recent upsurge of interest in the quantum properties of magnons for quantum information processing. An important issue is to examine the stability of quantum states of magnons against various relaxation and dephasing channels. Since the interaction of magnons in magnetic systems may fall in the ultra-strong and even deep-strong coupling regimes, the relaxation process of magnon states is quite different from the more common quantum optical systems. Here we study the relaxation and dephasing of magnons based on the Lindblad formalism and derive a generalized master equation that describes the quantum dynamics of magnons. Employing this master equation, we identify two distinct dissipation channels for squeezed magnons, i.e.,...
The existence of bound states of elementary spin waves (magnons) in one-dimensional quantum magnets ...
Magnetic noise spectroscopy provides a noninvasive probe of spin dynamics in magnetic materials. We ...
Although challenging, realizing controllable high-temperature entanglement is of immense importance ...
For a wide range of nonclassical magnonic states that have been proposed and demonstrated recently, ...
For a wide range of nonclassical magnonic states that have been proposed and demonstrated recently, ...
For a wide range of nonclassical magnonic states that have been proposed and demonstrated recently, ...
For a wide range of nonclassical magnonic states that have been proposed and demonstrated recently, ...
For a wide range of nonclassical magnonic states that have been proposed and demonstrated recently, ...
For a wide range of nonclassical magnonic states that have been proposed and demonstrated recently, ...
Two recent articles of the Munster University experimental team led by S.O. Demokritov displayed sev...
We present a theory of magnon-polaritons in quantum Ising materials, and develop a formalism describ...
We propose an experimentally realizable nonreciprocal magnonic device at the single-magnon level by ...
The dynamics and thermal equilibrium of spin waves (magnons) in a quantum ferromagnet as well as the...
The existence of bound states of elementary spin waves (magnons) in one-dimensional quantum magnets ...
In this work, we studied the relaxation dynamics of coherences of different order present in a syste...
The existence of bound states of elementary spin waves (magnons) in one-dimensional quantum magnets ...
Magnetic noise spectroscopy provides a noninvasive probe of spin dynamics in magnetic materials. We ...
Although challenging, realizing controllable high-temperature entanglement is of immense importance ...
For a wide range of nonclassical magnonic states that have been proposed and demonstrated recently, ...
For a wide range of nonclassical magnonic states that have been proposed and demonstrated recently, ...
For a wide range of nonclassical magnonic states that have been proposed and demonstrated recently, ...
For a wide range of nonclassical magnonic states that have been proposed and demonstrated recently, ...
For a wide range of nonclassical magnonic states that have been proposed and demonstrated recently, ...
For a wide range of nonclassical magnonic states that have been proposed and demonstrated recently, ...
Two recent articles of the Munster University experimental team led by S.O. Demokritov displayed sev...
We present a theory of magnon-polaritons in quantum Ising materials, and develop a formalism describ...
We propose an experimentally realizable nonreciprocal magnonic device at the single-magnon level by ...
The dynamics and thermal equilibrium of spin waves (magnons) in a quantum ferromagnet as well as the...
The existence of bound states of elementary spin waves (magnons) in one-dimensional quantum magnets ...
In this work, we studied the relaxation dynamics of coherences of different order present in a syste...
The existence of bound states of elementary spin waves (magnons) in one-dimensional quantum magnets ...
Magnetic noise spectroscopy provides a noninvasive probe of spin dynamics in magnetic materials. We ...
Although challenging, realizing controllable high-temperature entanglement is of immense importance ...