Laboratoire des Matériaux Semiconducteurs, Institut des Matériaux, Ecole Polytechnique Fédérale de Lausanne, 1015 Lausanne, Switzerland.
Nanoscale. 2012 Aug 21;4(16):4989-95. doi: 10.1039/c2nr31086d. Epub 2012 Jul 4.
Defined magnetization states in magnetic nanotubes could be the basic building blocks for future memory elements. To date, it has been extremely challenging to measure the magnetic states at the single-nanotube level. We investigate the magnetization states of an individual Ni nanotube by measuring the anisotropic magnetoresistance effect at cryogenic temperature. Depending on the magnitude and direction of the magnetic field, we program the nanotube to be in a vortex- or onion-like state near remanence.
定义的磁化状态在磁性纳米管中可能是未来存储元件的基本组成部分。迄今为止,在单纳米管水平上测量磁状态极具挑战性。我们通过在低温下测量各向异性磁电阻效应来研究单个 Ni 纳米管的磁化状态。根据磁场的大小和方向,我们将纳米管编程为在剩磁附近处于涡旋或洋葱状状态。