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Detection of chirality-induced spin polarization over millimeters in polycrystalline bulk samples of chiral disilicides NbSi_2 and TaSi_2

机译:检测手性诱导的手性散装样品NBSI_2和TASI_2的多晶散装样品中毫米的旋转极化

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摘要

We report that spin polarization occurs over millimeters in polycrystalline bulk samples of chiral disilicide NbSi_2 and TaSi_2. As previously demonstrated in the experiments using single crystals of NbSi_2 and TaSi_2, electrical transport measurements allow detection of direct and inverse signals associated with the chirality-induced spin polarization even in the chiral polycrystals. Spin polarization signals also appear in nonlocal measurements, in which charge current flows only in the area millimeters away from the detection electrode. These data mean that the spin polarization phenomena occur regardless of the presence of crystalline grains in the polycrystals, indicating a robustness and resilience of the chirality-induced spin polarization. On the basis of the experimental data, we found that the sum rule holds for the spin transport signals. A distribution of handedness over the samples was determined on average in the polycrystals. While the mechanism of preserving the spin polarization over millimeters remains to be clarified, the present study may open up prospects of spin control and manipulation over macroscopic length scales using chiral materials.
机译:我们认为自旋极化发生在手性硅酸钠NBSI_2和Tasi_2的多晶散装样品中的毫米。如前所述在使用NBSI_2和TASI_2的单晶的实验中证明,电气传输测量允许检测与手性诱导的旋转极化相关的直接和逆信号,即使在手性多晶中也是如此。自旋极化信号也出现在非识别量测量中,其中电荷电流仅在远离检测电极的面积毫米中流动。这些数据意味着无论多晶中是否存在结晶颗粒,都会发生自旋极化现象,表明手性诱导的自旋极化的鲁棒性和韧性。在实验数据的基础上,我们发现SUM规则适用于自旋运输信号。在多晶中平均确定样品上的分配分布。虽然保持旋转偏振的机制仍然澄清,但目前的研究可能在使用手性材料上开辟旋转控制和操纵的前景。

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  • 来源
    《Applied Physics Letters》 |2021年第18期|182403.1-182403.6|共6页
  • 作者单位

    Department of Physics and Electronics Osaka Prefecture University Sakai Osaka 599-8531 Japan;

    Department of Physics and Electronics Osaka Prefecture University Sakai Osaka 599-8531 Japan;

    Department of Physics and Electronics Osaka Prefecture University Sakai Osaka 599-8531 Japan;

    Department of Physics and Electronics Osaka Prefecture University Sakai Osaka 599-8531 Japan;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
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