首页> 外文会议>2011 24th International Vacuum Nanoelectronics Conference >Rotation of spin-polarization due to the Verwey transition at a surface of a <110>-oriented magnetite whisker observed by field-emitted electrons polarimetry
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Rotation of spin-polarization due to the Verwey transition at a surface of a <110>-oriented magnetite whisker observed by field-emitted electrons polarimetry

机译:通过场发射电子极化法观察到的<110>取向磁铁矿晶须表面的Verwey跃迁引起的自旋极化旋转

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We observed the Verwey transition, metal-insulator transition, in a spin-polarization of field-emitted electrons from a topmost surface of a <110>-oriented magnetite whisker by means of field-emitted electrons polarimetry. The measurements of spin polarization of field-emitted electrons from a magnetite whisker were carried out ranging from 40 to 300 K of tip temperature under UHV condition of 3×10−8 Pa. Raising temperature of the whisker, the polarization increased from 4 to 11 % with a rotation of its direction. The rotation angle corresponds to a change of magnetic easy axis from <001> to <111> direction caused by the Verwey transition. Our experimental results clarified that the Verwey transition occurs even at a surface as well as in a bulk.
机译:我们通过场发射电子极化法在从<110>取向磁铁矿晶须的最上层表面发射的场电子的自旋极化中观察到了Verwey跃迁,即金属-绝缘体跃迁。在3×10 -8 Pa的超高压条件下,对磁铁矿晶须发出的场发射电子的自旋极化进行了测量,其尖端温度范围为40 K至300K。极化随着方向的旋转从4%增加到11%。旋转角度对应于由Verwey过渡引起的易磁轴从<001>方向到<111>方向的变化。我们的实验结果表明,即使在表面以及整体中,都发生了Verwey跃迁。

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