Rotation of superfluid B3 in an magnetic field enhances the coupling of the nonzero mJ substrates of the real squashing collective mode to the zero sound, and the fivefold line splitting becomes observable even when H is parallel to and to the direction of sound propagation. Equilibrium vortex lattices and vortex-free states can be distinguished by their characteristic absorption spectra. The dependence of the sound attenuation on the angular velocity in magnetic fields up to 32 mT is reported; the data are qualitatively compared with theory.Peer reviewe
A wave-acoustics theory has been developed to describe the propagation of zero sound parallel to vor...
The first experiments on rotating 3HeA1 have been done using pulsed zero sound transmission techniqu...
Features in the zero sound attenuation near the pair-breaking edge in superfluid He-3-B have been ob...
Rotation of superfluid B3 in an magnetic field enhances the coupling of the nonzero mJ substrates of...
Rotation of superfluid B3 in an magnetic field enhances the coupling of the nonzero mJ substrates of...
Rotation of superfluid 3B in an magnetic field enhances the coupling of the nonzero mJ substrates of...
Observations and applications of nonlinear acoustic phenomena in superfluid3He-B are reported. Two-p...
Parametric excitation yields new results, which cannot be obtained by conventional linear spectrosco...
Parametric excitation yields new results, which cannot be obtained by conventional linear spectrosco...
We report on measurements of zero-sound attenuation in rotating and stationary3He-A and3He-B, in mag...
We report on investigations of a nonlinear parametric excitation of the real squashing (RSQ) collect...
We have studied ultrasonic attenuation in rotating 3He-B at low pressures (< 10 bar) in magnetic ...
We have excited the real squashing (RSQ) collective modes in 3He-B with two simultaneous ultrasound ...
Zero sound attenuation at 8.9 and 26.8 MHz in B3 shows an extremum at TAB in a field of 2 kG at low ...
A wave-acoustics theory has been developed to describe the propagation of zero sound parallel to vor...
A wave-acoustics theory has been developed to describe the propagation of zero sound parallel to vor...
The first experiments on rotating 3HeA1 have been done using pulsed zero sound transmission techniqu...
Features in the zero sound attenuation near the pair-breaking edge in superfluid He-3-B have been ob...
Rotation of superfluid B3 in an magnetic field enhances the coupling of the nonzero mJ substrates of...
Rotation of superfluid B3 in an magnetic field enhances the coupling of the nonzero mJ substrates of...
Rotation of superfluid 3B in an magnetic field enhances the coupling of the nonzero mJ substrates of...
Observations and applications of nonlinear acoustic phenomena in superfluid3He-B are reported. Two-p...
Parametric excitation yields new results, which cannot be obtained by conventional linear spectrosco...
Parametric excitation yields new results, which cannot be obtained by conventional linear spectrosco...
We report on measurements of zero-sound attenuation in rotating and stationary3He-A and3He-B, in mag...
We report on investigations of a nonlinear parametric excitation of the real squashing (RSQ) collect...
We have studied ultrasonic attenuation in rotating 3He-B at low pressures (< 10 bar) in magnetic ...
We have excited the real squashing (RSQ) collective modes in 3He-B with two simultaneous ultrasound ...
Zero sound attenuation at 8.9 and 26.8 MHz in B3 shows an extremum at TAB in a field of 2 kG at low ...
A wave-acoustics theory has been developed to describe the propagation of zero sound parallel to vor...
A wave-acoustics theory has been developed to describe the propagation of zero sound parallel to vor...
The first experiments on rotating 3HeA1 have been done using pulsed zero sound transmission techniqu...
Features in the zero sound attenuation near the pair-breaking edge in superfluid He-3-B have been ob...