Department of Physics, University of Basel, 4056 Basel, Switzerland.
Phys Rev Lett. 2013 Aug 9;111(6):067202. doi: 10.1103/PhysRevLett.111.067202. Epub 2013 Aug 8.
Using an optimally coupled nanometer-scale SQUID, we measure the magnetic flux originating from an individual ferromagnetic Ni nanotube attached to a Si cantilever. At the same time, we detect the nanotube's volume magnetization using torque magnetometry. We observe both the predicted reversible and irreversible reversal processes. A detailed comparison with micromagnetic simulations suggests that vortexlike states are formed in different segments of the individual nanotube. Such stray-field free states are interesting for memory applications and noninvasive sensing.
利用最佳耦合的纳米级 SQUID,我们测量了源自附着在 Si 悬臂梁上的单个铁磁 Ni 纳米管的磁通量。同时,我们使用转矩磁强计检测了纳米管的体积磁化强度。我们观察到了预测的可逆和不可逆反转过程。与微磁模拟的详细比较表明,涡旋态形成于单个纳米管的不同段中。这种无杂散场的状态对于存储应用和非侵入式传感很有趣。