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Resonant Frequency Change of Torsional Oscillator Induced by Solid ~4He in Torsion Rod

机译:固体杆〜4He在扭杆中引起的扭振谐振频率变化

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The contribution of solid ~4He contained in the torsion rod of a torsional oscillator to its resonant frequency is investigated using a modified torsional oscillator. The purpose of the present study is to discriminate between two possible contributions to the resonant frequency of the torsional oscillator, which abruptly increases below ~0.2 K. The first possible contribution is the elastic property change of solid ~4He in the torsion rod (i.e., shear modulus increase), and the second possible contribution is mass decoupling by the supersolid transition of solid ~4He in the oscillating body (i.e., a decrease in the momentum inertia). A torsional oscillator that has no hollow space for solid ~4He in the body was constructed, and its resonant frequency and Q-factor were compared to those of the conventional oscillator. The shear modulus contributions of solid ~4He in the torsion rod were identical, but the momentum inertias of solid ~4He in the oscillating body were quite different between the two oscillators. Surprisingly, the observed frequency behavior and magnitude of the two oscillators were comparable. This finding indicates that the resonant frequency increase observed in the torsional oscillator originates from the increase in the shear modulus of solid ~4He in the torsion rod, rather than from the momentum inertia decrease of the solid ~4He in the oscillating body. The temperature dependence of the increase in the shear modulus of solid ~4He was well reproduced by the dislocation-vibration model with a much lower ~3He impurity concentration than that of commercially available ~4He gas.
机译:使用改进的扭转振荡器,研究了扭转振荡器的扭转杆中所含固体〜4He对共振频率的贡献。本研究的目的是区分对扭振振荡器共振频率的两个可能贡献,该贡献突然增加到〜0.2 K以下。第一个可能的贡献是扭杆中固体〜4He的弹性性质变化(即,剪切模量的增加),第二个可能的贡献是在振荡体内固体〜4He的超固体转变引起的质量解耦(即动量惯性的减小)。构造了一个在体内没有用于固体〜4He的空心空间的扭转振荡器,并将其谐振频率和Q因子与常规振荡器进行了比较。扭杆中固体〜4He的剪切模量贡献是相同的,但两个振荡器中固体〜4He在振动体内的动量惯性却有很大差异。令人惊讶的是,观察到的两个振荡器的频率行为和幅度是可比的。该发现表明,在扭转振荡器中观察到的共振频率的增加,是由于扭杆中固体〜4He的剪切模量的增加,而不是由于振动体中固体〜4He的动量惯性的减小。位错振动模型很好地再现了固体〜4He剪切模量增加的温度依赖性,〜3He杂质浓度比市售〜4He气体低得多。

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