首页> 美国卫生研究院文献>Nanoscale Research Letters >Intriguing photo-control of exchange bias in BiFeO3/La2/3Sr1/3MnO3 thin films on SrTiO3 substrates
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Intriguing photo-control of exchange bias in BiFeO3/La2/3Sr1/3MnO3 thin films on SrTiO3 substrates

机译:有趣的SrTiO3衬底上BiFeO3 / La2 / 3Sr1 / 3MnO3薄膜中交换偏压的光控制

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摘要

To date, electric fields have been widely used to control the magnetic properties of BiFeO3-based antiferromagnet/ferromagnet heterostructures through application of an exchange bias. To extend the applicability of exchange bias, however, an alternative mechanism to electric fields is required. Here, we report the photo-control of exchange bias in BiFeO3/La2/3Sr1/3MnO3 thin films on an SrTiO3 substrate. Through an ex situ pulsed laser deposition technique, we successfully synthesized epitaxial BiFeO3/La2/3Sr1/3MnO3 thin films on SrTiO3 substrates. By measuring magnetoresistance under light illumination, we investigated the effect of light illumination on resistance, exchange bias, and coercive field in BiFeO3/La2/3Sr1/3MnO3 thin films. After illumination of red and blue lights, the exchange bias was sharply reduced compared to that measured in the dark. With increasing light intensity, the exchange bias under red and blue lights initially decreased to zero and then appeared again. It is possible to reasonably explain these behaviors by considering photo-injection from SrTiO3 and the photo-conductivity of La2/3Sr1/3MnO3. This study may provide a fundamental understanding of the mechanism underlying photo-controlled exchange bias, which is significant for the development of new functional spintronic devices.
机译:迄今为止,电场已被广泛用于通过施加交换偏压来控制基于BiFeO3的反铁磁体/铁磁体异质结构的磁性。然而,为了扩展交换偏压的适用性,需要电场的替代机制。在这里,我们报告在SrTiO3衬底上的BiFeO3 / La2 / 3Sr1 / 3MnO3薄膜中交换偏压的光控制。通过异位脉冲激光沉积技术,我们成功地在SrTiO3衬底上合成了外延BiFeO3 / La2 / 3Sr1 / 3MnO3薄膜。通过测量光照下的磁阻,我们研究了光照对BiFeO3 / La2 / 3Sr1 / 3MnO3薄膜的电阻,交换偏压和矫顽场的影响。与在黑暗中测得的相比,在红色和蓝色光照射后,交换偏压急剧降低。随着光强度的增加,红光和蓝光下的交换偏差最初减小到零,然后再次出现。考虑到SrTiO3的光注入和La 2/3 Sr 1/3 MnO 3 3的光电导性,可以合理地解释这些行为。子>。这项研究可能提供对光控交换偏置的潜在机制的基本了解,这对于开发新的功能自旋电子器件很重要。

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