Controlling magnon densities in magnetic materials enables driving spin transport in magnonic devices. We demonstrate the creation of large, out-of-equilibrium magnon densities in a thin-film magnetic insulator via microwave excitation of coherent spin waves and subsequent multimagnon scattering. We image both the coherent spin waves and the resulting incoherent magnon gas using scanning-probe magnetometry based on electron spins in diamond. We find that the gas extends unidirectionally over hundreds of micrometers from the excitation stripline. Surprisingly, the gas density far exceeds that expected for a boson system following a Bose-Einstein distribution with a maximum value of the chemical potential. We characterize the momentum distrib...
The transport of spin information has been studied in various materials, such as metals(1), semicond...
Nanomagnets are widely used to store information in non-volatile spintronic devices. Spin waves can ...
As it becomes more and more difficult to miniaturize electronic circuits, the information industry i...
Controlling magnon densities in magnetic materials enables driving spin transport in magnonic device...
Controlling magnon densities in magnetic materials enables driving spin transport in magnonic device...
The spin chemical potential characterizes the tendency of spins to diffuse. Probing this quantity co...
While being electrically insulating, magnetic insulators can behave as good spin conductors by carry...
The manipulation and propagation of spin degree of freedom have been extensively studied for last de...
International audienceWe experimentally demonstrate generation of coherent propagating magnons in ul...
Nitrogen-vacancy (NV) magnetometry is a new technique for imaging spin waves in magnetic materials. ...
© 2015 American Physical Society. We report on experimental observation of Bose-Einstein condensatio...
The elementary excitations of magnets are called spin waves, and their corresponding quasi-particles...
The Doppler shift of the quasiparticle dispersion by charge currents is responsible for the critical...
Spin waves have risen as promising candidate information carriers for the next generation of informa...
Magnons are quanta of spin waves, i.e. modes of collectively precessing spins. Thermally excited mag...
The transport of spin information has been studied in various materials, such as metals(1), semicond...
Nanomagnets are widely used to store information in non-volatile spintronic devices. Spin waves can ...
As it becomes more and more difficult to miniaturize electronic circuits, the information industry i...
Controlling magnon densities in magnetic materials enables driving spin transport in magnonic device...
Controlling magnon densities in magnetic materials enables driving spin transport in magnonic device...
The spin chemical potential characterizes the tendency of spins to diffuse. Probing this quantity co...
While being electrically insulating, magnetic insulators can behave as good spin conductors by carry...
The manipulation and propagation of spin degree of freedom have been extensively studied for last de...
International audienceWe experimentally demonstrate generation of coherent propagating magnons in ul...
Nitrogen-vacancy (NV) magnetometry is a new technique for imaging spin waves in magnetic materials. ...
© 2015 American Physical Society. We report on experimental observation of Bose-Einstein condensatio...
The elementary excitations of magnets are called spin waves, and their corresponding quasi-particles...
The Doppler shift of the quasiparticle dispersion by charge currents is responsible for the critical...
Spin waves have risen as promising candidate information carriers for the next generation of informa...
Magnons are quanta of spin waves, i.e. modes of collectively precessing spins. Thermally excited mag...
The transport of spin information has been studied in various materials, such as metals(1), semicond...
Nanomagnets are widely used to store information in non-volatile spintronic devices. Spin waves can ...
As it becomes more and more difficult to miniaturize electronic circuits, the information industry i...