论文标题
Ni $ _4 $单分子磁铁中浆果相干扰的直接光谱观察
Direct Spectroscopic Observation of Berry Phase Interference in the Ni$_4$ Single-Molecule Magnet
论文作者
论文摘要
当不同的隧道路径破坏性干扰时,自旋系统中的浆果相影响会导致隧道效应的抑制。通过测量磁化动力学,在几个单分子磁铁(SMM)中看到了这种影响,其中实验信号可能来自许多能级的贡献。在这里,我们提出了浆果相干扰效应的实验测量,这些效应是通过电子自旋共振在四倍对称SMM上确定的。具体而言,我们在晶体样品的硬平面中存在横向场的情况下,在ni $ _4 $ smm中测量隧道切口激发态之间的过渡。通过使用自制的旋转设备,可以更改样品的方向\ textIt {intu {intu},以便可以将场方向横扫样品的整个硬平面。当磁场位于平面的某些方向时,我们会观察到过渡的分裂,这是浆果相干扰的标志。实验结果通过理论预测很好地再现,数据的拟合提供了有关偶性相互作用和样品未对准的影响的信息。
Berry phase effects in spin systems lead to the suppression of tunneling effects when different tunneling paths interfere destructively. Such effects have been seen in several single-molecule magnets (SMMs) through measurements of magnetization dynamics, where the experimental signal may arise from the contributions of numerous energy levels. Here we present experimental measurements of Berry phase interference effects that are determined through electron-spin resonance on a four-fold symmetric SMM. Specifically, we measure transitions between tunnel-split excited states in the Ni$_4$ SMM in the presence of a transverse field in the hard plane of the crystalline sample. By using a home-built rotation apparatus, the direction of the sample can be changed \textit{in situ} so that that the field direction can be swept through the entire hard plane of the sample. When the field is in certain directions in the plane, we observe a splitting of the transition, a hallmark of Berry phase interference. The experimental results are well reproduced by theoretical predictions, and fitting of the data provides information about the effects of dipolar interactions and sample misalignment.