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Coherent electric field manipulation of Fe3 spins in PbTiO3

机译:PBTIO3中Fe3旋转的相干电场操纵

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Magnetoelectrics, materials that exhibit coupling between magnetic and electric degrees of freedom, not only offer a rich environment for studying the fundamental materials physics of spin-charge coupling but also present opportunities for future information technology paradigms. We present results of electric field manipulation of spins in a ferroelectric medium using dilute ferric ion–doped lead titanate as a model system. Combining first-principles calculations and electron paramagnetic resonance (EPR), we show that the ferric ion spins are preferentially aligned perpendicular to the ferroelectric polar axis, which we can manipulate using an electric field. We also demonstrate coherent control of the phase of spin superpositions by applying electric field pulses during time-resolved EPR measurements. Our results suggest a new pathway toward the manipulation of spins for quantum and classical spintronics.
机译:磁电,磁力和电气自由度之间耦合的材料,不仅为研究自旋电荷耦合的基本材料物理而提供丰富的环境,而且还为未来信息技术范例提供的机会。 我们使用稀铁离子掺杂的钛酸盐作为模型系统,呈现铁电介质中旋转的电场操纵的结果。 结合第一原理计算和电子顺磁共振(EPR),我们表明铁离子旋转优先于铁电极轴线对齐,我们可以使用电场操纵。 我们还通过在暂定的EPR测量期间施加电场脉冲来证明对旋转叠加阶段的相干控制。 我们的结果表明了一种新的途径,用于操纵旋转的量子和古典闪奖。

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