论文标题

具有单电子自旋灵敏度的鱿鱼尖端,用于高场和超低温度纳米磁成像

SQUID-on-tip with single-electron spin sensitivity for high-field and ultra-low temperature nanomagnetic imaging

论文作者

Anahory, Y., Naren, H. R., Lachman, E. O., Sinai, S. Buhbut, Uri, A., Embon, L., Yaakobi, E., Myasoedov, Y., Huber, M. E., Klajn, R., Zeldov, E.

论文摘要

扫描纳米级超导量子干扰装置(纳米Quids)对低维系统的磁性,自旋和传输性能的高度敏感定量成像越来越感兴趣。利用专门设计的凹槽石英毛细管将其拉入锋利的移液器中,我们制造了最小的鱿鱼端(SOT)设备,有效直径降至39 nm。将电阻分流的集成在与移液器顶点相近,再加上自我对齐的IN和SN的沉积,导致SOT的通量噪声为42 N $φ_0$ HZ $^{ - 1/2} $,产生创纪录的低旋转噪声,使得创纪录的低旋转噪声为0.29 $μ_b$ Hz $ hz $ hz $^$^{ - 1/2} $。此外,新的SOT在亚克尔文温度和高2.5吨以上的高磁场处的功能。将SOTS整合到扫描探针显微镜中,使我们能够为300 mk的单个Fe $ _3 $ _4 $ _4 $ _4 $ _4 $ _4 $ _4 $ _4 $ _4 $ _4 $ _4纳米型弹簧图像成像。我们的结果表明,简单的磁化轴方向在室温下从(111)方向过渡到平面方向,这可以归因于fe $ _3 $ o $ _4 $的Verwey相变。

Scanning nanoscale superconducting quantum interference devices (nanoSQUIDs) are of growing interest for highly sensitive quantitative imaging of magnetic, spintronic, and transport properties of low-dimensional systems. Utilizing specifically designed grooved quartz capillaries pulled into a sharp pipette, we have fabricated the smallest SQUID-on-tip (SOT) devices with effective diameters down to 39 nm. Integration of a resistive shunt in close proximity to the pipette apex combined with self-aligned deposition of In and Sn, have resulted in SOT with a flux noise of 42 n$Φ_0$Hz$^{-1/2}$, yielding a record low spin noise of 0.29 $μ_B$Hz$^{-1/2}$. In addition, the new SOTs function at sub-Kelvin temperatures and in high magnetic fields of over 2.5 T. Integrating the SOTs into a scanning probe microscope allowed us to image the stray field of a single Fe$_3$O$_4$ nanocube at 300 mK. Our results show that the easy magnetization axis direction undergoes a transition from the (111) direction at room temperature to an in-plane orientation, which could be attributed to the Verwey phase transition in Fe$_3$O$_4$.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源