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利用商业磁盘驱动器写头进行超灵敏机械磁矩检测。

Ultrasensitive mechanical detection of magnetic moment using a commercial disk drive write head.

机构信息

Department of Physics, ETH Zurich, Otto Stern Weg 1, 8093 Zurich, Switzerland.

出版信息

Nat Commun. 2016 Sep 20;7:12714. doi: 10.1038/ncomms12714.

Abstract

Sensitive detection of weak magnetic moments is an essential capability in many areas of nanoscale science and technology, including nanomagnetism, quantum readout of spins and nanoscale magnetic resonance imaging. Here we show that the write head of a commercial hard drive may enable significant advances in nanoscale spin detection. By approaching a sharp diamond tip to within 5 nm from a write pole and measuring the induced diamagnetic moment with a nanomechanical force transducer, we demonstrate a spin sensitivity of 0.032 μB Hz(-1/2), equivalent to 21 proton magnetic moments. The high sensitivity is enabled in part by the pole's strong magnetic gradient of up to 28 × 10(6) T m(-1) and in part by the absence of non-contact friction due to the extremely flat writer surface. In addition, we demonstrate quantitative imaging of the pole field with ∼10 nm spatial resolution. We foresee diverse applications for write heads in experimental condensed matter physics, especially in spintronics, ultrafast spin manipulation and mesoscopic physics.

摘要

弱磁矩的灵敏检测是许多纳米科学技术领域的基本能力,包括纳米磁学、自旋量子读出和纳米磁共振成像。在这里,我们展示了商用硬盘的写磁头可以在纳米级自旋检测方面取得重大进展。通过将一个尖锐的钻石尖端靠近写磁极至 5nm 的距离,并使用纳米机械力传感器测量感应的抗磁性矩,我们证明了自旋灵敏度为 0.032μB Hz-1/2,相当于 21 个质子磁矩。高灵敏度部分归因于磁极高达 28×106T m-1 的强磁场梯度,部分归因于由于极平的写磁头表面而不存在非接触摩擦。此外,我们还证明了具有约 10nm 空间分辨率的磁极场的定量成像。我们预见到写磁头在实验凝聚态物理中的各种应用,特别是在自旋电子学、超快自旋操控和介观物理中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/03d8/5034305/2e187b259468/ncomms12714-f1.jpg

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