By performing numerical simulations based on the Gross-Pitaevskii equation, we make direct quantitative measurements of the sound energy released due to superfluid vortex reconnections. We show that the energy radiated expressed in terms of the loss of vortex line length is a simple function of the reconnection angle. In addition, we study the temporal and spatial distribution of the radiation and show that energy is emitted in the form of a sound pulse with a wavelength of a few healing lengths
Rotation of superfluid 3B in an magnetic field enhances the coupling of the nonzero mJ substrates of...
An analysis of the evolution and sound radiation of a slender vortex ring with initial weak perturba...
We study the scattering of vortex rings by a superfluid line vortex using the Gross-Pitaevskii equat...
The low temperature dynamics of a vortex in a trapped quasi-two-dimensional Bose-Einstein condensat...
In a concurrent work, Villois et al. [Phys. Rev. Lett. 125, 164501 (2020)10.1103/PhysRevLett.125.164...
The reconnecting vortex-tangle model is used to investigate the interaction of tangles of quantized ...
A wave-acoustics theory has been developed to describe the propagation of zero sound parallel to vor...
Kelvin waves—helical waves on quantized vortex lines—are the normal modes of vortices in a superflui...
Sound waves scattered from a hydrodynamic vortex may be amplified. Such superradiant scattering foll...
The acoustic field radiated by a turbulent vortex ring is studied. Direct Numerical Simulations (DNS...
From the fundamental conservation equations of mass, momentum and en-ergy for an ideal fluid of unif...
We statistically study vortex reconnections in quantum fluids by evolving different realizations of ...
We study reconnections of quantum vortices by numerically solving the governing Gross-Pitaevskii equ...
In some cases, the prediction of the sound generated by flows is impaired by inaccuracies in the ava...
Aeroacoustics is a key focus in the design of propulsion, energy, and transportation systems. Noise ...
Rotation of superfluid 3B in an magnetic field enhances the coupling of the nonzero mJ substrates of...
An analysis of the evolution and sound radiation of a slender vortex ring with initial weak perturba...
We study the scattering of vortex rings by a superfluid line vortex using the Gross-Pitaevskii equat...
The low temperature dynamics of a vortex in a trapped quasi-two-dimensional Bose-Einstein condensat...
In a concurrent work, Villois et al. [Phys. Rev. Lett. 125, 164501 (2020)10.1103/PhysRevLett.125.164...
The reconnecting vortex-tangle model is used to investigate the interaction of tangles of quantized ...
A wave-acoustics theory has been developed to describe the propagation of zero sound parallel to vor...
Kelvin waves—helical waves on quantized vortex lines—are the normal modes of vortices in a superflui...
Sound waves scattered from a hydrodynamic vortex may be amplified. Such superradiant scattering foll...
The acoustic field radiated by a turbulent vortex ring is studied. Direct Numerical Simulations (DNS...
From the fundamental conservation equations of mass, momentum and en-ergy for an ideal fluid of unif...
We statistically study vortex reconnections in quantum fluids by evolving different realizations of ...
We study reconnections of quantum vortices by numerically solving the governing Gross-Pitaevskii equ...
In some cases, the prediction of the sound generated by flows is impaired by inaccuracies in the ava...
Aeroacoustics is a key focus in the design of propulsion, energy, and transportation systems. Noise ...
Rotation of superfluid 3B in an magnetic field enhances the coupling of the nonzero mJ substrates of...
An analysis of the evolution and sound radiation of a slender vortex ring with initial weak perturba...
We study the scattering of vortex rings by a superfluid line vortex using the Gross-Pitaevskii equat...