论文标题

超级流体$^4 $ HE与相对流的鲜明效果

The Stark effect in superfluid $^4$He with relative flows

论文作者

Rybalko, A. S., Rubets, S. P., Rudavskii, E. Ya., Golovashchenko, R. V., Tarapov, S. I., Derkach, V. N., Khodusov, V. D., Naumovets, A. S., Nurmagambetov, A. J.

论文摘要

我们进行了一系列实验,以观察超氟$^4 $中的鲜明型效果,在存在正常和超氟体成分的相对层流流的情况下。它设计了一个测量单元,使我们能够同时在液体中创建流体动力流,并在外部电场上进行高频无线电测量。我们使用了一个介电磁盘谐振器,该磁盘具有可能覆盖较大的频率范围。在我们的实验中,它注册了介电磁盘谐振器模式的光谱,以及在其背景和不同条件下在He II中微波辐射的狭窄吸收线。我们发现,在液体氦气中,在1.4 $÷$ 2.17 K的温度范围内,正常和超氟的相对运动在EM谱中观察到狭窄的吸收/辐射线,其频率为-180 GHz-对应于Roton的最小值。该线在恒定的电场中分裂。请注意,在弱电场中,分裂的值线性取决于电场强度,即检测到线性恒定效应。发现随着外部电场的增加,两条拆分线都朝向更低的频率侧。所获得的数据集可以用经验公式描述,并考虑到与极化部分相关的鲜明效应的线性部分以及二次添加。数据指出的是,在液体氦气中具有偶极矩$ \ sim 10^{ - 4} $ d,在四阶较小的极性分子的特征偶极矩中。还进行了我们的发现与基本颗粒和核的电偶极矩(EDM)的值的比较。我们简要讨论了已知的理论模型的扩展以及EDM生产的可能机制。

We conducted series of experiments on observing a Stark-type effect in superfluid $^4$He in presence of relative laminar flows of the normal and superfluid components. It is designed a measurement cell which allows us to simultaneously create hydrodynamic flows in the liquid and to carry out high-frequency radio-measurements at external electric field. We used a dielectric disk resonator that made possible to cover a wide frequency range. In our experiments it was registered the spectrum of the dielectric disk resonator modes, as well as narrow lines of absorption of a microwave radiation in He II on its background and in different conditions. We discovered that having in the liquid helium a relative motion of the normal and superfluid fractions in the temperature range of 1.4$÷$2.17 K the narrow line of absorption/radiation is observed in the EM spectrum, the frequency of which - 180 GHz - corresponds to the roton minimum. This line splits in a constant electric field. Note that in a weak electric field the value of splitting depends linearly on the electric field strength, i.e. the linear Stark effect is detected. It is found that with the external electric field increasing both split lines are displaced towards more low frequencies side. The obtained data set could be described by an empirical formula, taking into account as the linear part of the Stark effect, as well as a quadratic addition, related to the polarization part. The data point out on having particles or excitations in the liquid helium with the dipole moment $\sim 10^{-4}$ D, that in four order less of the characteristic dipole moment of polar molecules. The comparison of our findings to values of the electric dipole moment (EDM) of elementary particles and nuclei is also performed. We sum up with brief discussion of extensions of the known theoretical models and possible mechanisms of the EDM production.

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