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Neutron scattering study of the excitation spectrum of solid helium at ultra-low temperatures

机译:超低温下固体氦激发光谱的中子散射研究

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There has b3een a resurgence of interest in the properties of solid helium due to the recent discovery of non-classical rotational inertia (NCRI) in solid 4He by Chan and coworkers below 200 mK which they have interpreted as a transition to a `supersolid' phase. We have carried out a series of elastic and inelastic neutron scattering measurements on single crystals of hcp 4He at temperatures down to 60 mK. While we have found no direct evidence of any change in the excitation spectrum at low temperatures, we have found that the excitation spectrum of solid 4He shows several interesting features, including extra branches in addition to the phonon branches. We interpret these extra branches as single particle excitations due to propagating vacancy waves, which map on to the famous `roton minimum' long known in the excitation spectrum of superfluid liquid 4He. The results show that in fact solid 4He shares several features in common with the superfluid.
机译:Chan和同事在200 mK以下将固体4He中的非经典旋转惯性(NCRI)发现于最近,这使人们对固体氦的性质重新产生兴趣,他们将其解释为向“超固体”相的过渡。我们在温度低至60 mK的hcp 4He单晶上进行了一系列弹性和非弹性中子散射测量。虽然我们没有发现低温下激发光谱有任何变化的直接证据,但我们发现固体4He的激发光谱显示了几个有趣的特征,除了声子分支外还包括其他分支。我们将这些多余的分支解释为由于传播的空位波而引起的单粒子激发,该空位波映射到超流液体4He的激发光谱中长期已知的著名“最小子集”。结果表明,实际上4He具有与超流体相同的几个特征。

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