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Decoupling of first sound from second sound in dilute He-3-superfluid He-4 mixtures

机译:稀He-3超流体He-4混合物中第一声音与第二声音的解耦

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Bulk superfluid helium supports two sound modes: first sound is an ordinary pressure wave, while second sound is a temperature wave, unique to superfluid systems. These sound modes do not usually exist independently, but rather variations in pressure are accompanied by variations in temperature, and vice versa. We studied the coupling between first and second sound in dilute He-3 -superfluid He-4 mixtures, between 1.6 and 2.2 K, at He-3 concentrations ranging from 0% to 11%, under saturated vapor pressure, using a quartz tuning fork oscillator. Second sound coupled to first sound can create anomalies in the resonance response of the fork, which disappear only at very specific temperatures and concentrations, where two terms governing the coupling cancel each other, and second sound and first sound become decoupled.
机译:体超流体氦气支持两种声音模式:第一种声音是普通的压力波,第二种声音是温度波,这是超流体系统所独有的。这些声音模式通常不是独立存在的,而是压力的变化伴随着温度的变化,反之亦然。我们使用石英音叉研究了在饱和蒸气压下,He-3浓度在0%至11%范围内的He-3浓度为1.6至2.2 K的稀He-3超流体He-4混合物中的第一声音和第二声音之间的耦合。振荡器。与第一声音耦合的第二声音会在叉的共振响应中产生异常,这种异常仅在非常特定的温度和浓度下才会消失,控制耦合的两项相互抵消,第二声音与第一声音会解耦。

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