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首页> 外文期刊>Journal of Low Temperature Physics >The Transverse Acoustic Response of Superfluid ~3He-B
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The Transverse Acoustic Response of Superfluid ~3He-B

机译:〜3He-B超流体的横向声响应

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摘要

For both normal and superfluid 'He, the propagation of a collisionless transverse sound mode is predicted. The study of this mode in the normal fluid has been problematic: it travels only slightly faster than the Fermi velocity and is very highly attenuated. Early theoretical results suggested that transverse sound would not propagate in the superfluid and the experimental study of this mode was not actively pursued. However, recent theoretical work has predicted that this mode should indeed propagate, at sufficiently high frequencies and low temperatures, due to the interaction with the imaginary squashing mode. We present here an extensive experimental study of the transverse acoustic response in the B phase of superfluid JHe. These measurements were performed on a short path length (30.5 microns) acoustic cavity, using a continuous wave, single ended, acoustic impedance technique. Simultaneous measurements were made of the longitudinal acoustic response, on an adjacent acoustic cavity of similar geometry. Both sound modes were excited at a frequency of 61 MHz. With this arrangement, well understood features in the longitudinal acoustic response were used as fiducial points for the study of heretofore ambiguous or unobserved features in the transverse acoustic response. As predicted by recent theoretical calculations, the trans-verse acoustic response was markedly different when the sound frequency was greater than the imaginary squashing mode frequency, as compared to when the sound frequency was less than the imaginary squashing mode frequency. At lower pressures the transverse acoustic response clearly exhibited the signatures of an evolving standing wave pattern (with the transverse sound velocity much less than the longitudinal sound velocity), and as such provides convincing evidence of a propagating transverse mode.
机译:对于正常流体和超流体He,都预测了无碰撞横向声模的传播。在普通流体中对这种模式的研究存在问题:它的行进速度仅比费米速度稍快,并且衰减非常大。早期的理论结果表明,横向声将不会在超流体中传播,因此未积极进行这种模式的实验研究。然而,最近的理论工作已经预测,由于与虚构的挤压模式的相互作用,该模式的确应该在足够高的频率和低温下传播。在这里,我们对超流体JHe的B相中的横向声响应进行了广泛的实验研究。这些测量是使用连续波,单端声阻抗技术在短路径长度(30.5微米)的声腔上进行的。在相似几何形状的相邻声腔上同时测量了纵向声响应。两种声音模式均以61 MHz的频率激发。通过这种布置,纵向声响应中的众所周知的特征被用作基准点,以研究迄今为止在横向声响应中的模棱两可或未观察到的特征。如最近的理论计算所预测的,当声音频率大于虚构的挤压模式频率时,与声音频率小于虚构的挤压模式频率时相比,横向声学响应明显不同。在较低的压力下,横向声响应清楚地表现出不断发展的驻波模式的特征(横向声速远小于纵向声速),因此提供了令人信服的横向模式传播的证据。

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