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首页> 外文期刊>Journal of Applied Physics >Electromagnetic generation of ultrasonic waves in 3‐d transition metals
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Electromagnetic generation of ultrasonic waves in 3‐d transition metals

机译:三维过渡金属中超声波的电磁波产生

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摘要

We investigated experimentally acoustic waves generated by electromagnetic means in the surface of 3‐d transition metals. The signal amplitude was greatest when the static magnetic field was normal to the generating surface. The amplitude increased in proportion to the external field only up to 3 kOe in both polycrystalline and single crystals of Ni, while there was a tendency for the signal to decrease at high fields. Generation efficiency in Ni improved with increasing temperature at low fields, but the amplitude observed at high fields decreased at high temperatures. The experimental results in ferromagnetic nickel are explained in terms of dynamic magnetostriction. Above the Curie temperature, the magnitude of the amplitude was accounted for by the Lorentz force mechanism applicable to nonmagnetic metals. The same mechanism also accounted for the amplitude observed in Fe and Co at room temperature. The results in ferromagnetic nickel are unique because of the large magnetostriction and small crystal anisotropy.
机译:我们实验研究了3d过渡金属表面由电磁方式产生的声波。当静磁场垂直于生成表面时,信号幅度最大。在镍的多晶和单晶中,振幅仅与外部电场成比例地增加,直到3 kOe,而在高电场下,信号却趋于降低。 Ni的生成效率随着低场温度的升高而提高,但在高场时观察到的振幅在高温下降低。用动态磁致伸缩解释了铁磁性镍的实验结果。在居里温度以上,振幅的大小由适用于非磁性金属的洛伦兹力机制解释。相同的机制也解释了室温下Fe和Co中观察到的振幅。由于大的磁致伸缩和小的晶体各向异性,铁磁性镍的结果是独特的。

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    《Journal of Applied Physics》 |1973年第11期|共5页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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