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Some thermo- and galvanomagnetic properties of a bismuth crystal

机译:铋晶体的一些热磁和电磁性质

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摘要

The fractional changes, due to a magnetic field, in the electrical conductivity, in the thermal conductivity, and in the thermoelectric power of a single bismuth crystal are measured in these experiments. These changes are determined as a function of the field strength, of the direction of the field, of the direction of the crystal axis, and of the direction of the heat and electric currents through the crystal. An electric current sent through the crystal cools one junction and heats the other by the Peltier effect. The temperature difference thus produced gives rise to a thermal e.m.f. in the crystal circuit. Observations of this e.m.f. allow the calculation of the fractional changes produced in the thermal conductivity and in the thermoelectric power. The change of electrical conductivity is influenced much more strongly by the crystal structure than is the change of thermal conductivity. Crystal structure and orientation of the magnetic field both affect strongly the change in the thermoelectric power. The theory of electrons in metals in its present form does not give an adequate explanation of the results. If the magnetic field changes the free electron density in bismuth some of the results may be explained in a general way.
机译:在这些实验中,测量了由于磁场,单个铋晶体的电导率,热导率和热电功率的分数变化。这些变化取决于场强,场方向,晶体轴方向以及通过晶体的热量和电流的方向。通过珀耳帖效应,流过晶体的电流会冷却一个结,并加热另一个结。由此产生的温差引起热电势。在晶体电路中。这个e.m.f.的观察允许计算热导率和热电功率产生的分数变化。晶体结构对电导率的变化的影响远大于对热导率的变化的影响。晶体的结构和磁场的方向都强烈影响热电功率的变化。当前形式的金属中的电子理论未能充分说明结果。如果磁场改变了铋中的自由电子密度,则可以用一般方式来解释某些结果。

著录项

  • 作者

    Banta, H. E.;

  • 作者单位
  • 年度 1932
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  • 原文格式 PDF
  • 正文语种 eng
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