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Acoustic microscopy and nonlinear effects in pressurized superfluid helium

机译:加压超流氦的声学显微镜和非线性效应

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The operation of an acoustic microscope having a resolution of 15 mm has been demonstrated. It uses as a coupling medium superfluid /sup 4/He colder than 0.9 K and pressurized to greater than 20 bar. The microscope has been used to image objects that show little or no contrast on a scanning electron microscope. In addition, the acoustic microscope has been used to study the properties of sound propagation in the coupling fluid. At low acoustic intensities, the coupling fluid has very low acoustic attenuation at the microscope's operating frequency (15.3 GHz), but near the focal point the acoustic intensity can be high enough that the helium behaves with extreme nonlinearity. In fact, this medium is capable of entering new regimes of nonlinear interaction. Plots of the received signal versus input power display a nearly complete source depletion at certain input power levels and a reconversion to the source frequency at higher power levels. Arguments that the process underlying this nonlinear behavior is harmonic generation are presented.
机译:已经证明了具有15mm分辨率的声显微镜的操作。它使用比0.9 K更冷且加压到20 bar以上的超流体/ sup 4 / He作为耦合介质。显微镜已被用来对在扫描电子显微镜上显示很少或没有对比度的物体成像。另外,声学显微镜已经被用于研究在耦合流体中的声音传播的特性。在低声强度下,耦合液在显微镜的工作频率(15.3 GHz)处具有非常低的声衰减,但是在焦点附近,声强度可能足够高,以至于氦气表现出极大的非线性。实际上,这种介质能够进入非线性相互作用的新状态。接收信号与输入功率的关系图在某些输入功率电平下显示出几乎完全的源耗尽,而在较高功率电平下则转换为源频率。提出了这种非线性行为的基础过程是谐波产生的争论。

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