Yang Kaifeng, Nagase Katsumi, Hirayama Yoshiro, Mishima Tetsuya D, Santos Michael B, Liu Hongwu
State Key Lab of Superhard Materials, College of Physics, Jilin University, 130012, Changchun, People's Republic of China.
Department of Physics, Tohoku University, Sendai, Miyagi, 980-8578, Japan.
Nat Commun. 2021 Oct 14;12(1):6006. doi: 10.1038/s41467-021-26306-8.
Detection and characterization of a different type of topological excitations, namely the domain wall (DW) skyrmion, has received increasing attention because the DW is ubiquitous from condensed matter to particle physics and cosmology. Here we present experimental evidence for the DW skyrmion as the ground state stabilized by long-range Coulomb interactions in a quantum Hall ferromagnet. We develop an alternative approach using nonlocal resistance measurements together with a local NMR probe to measure the effect of low current-induced dynamic nuclear polarization and thus to characterize the DW under equilibrium conditions. The dependence of nuclear spin relaxation in the DW on temperature, filling factor, quasiparticle localization, and effective magnetic fields allows us to interpret this ground state and its possible phase transitions in terms of Wigner solids of the DW skyrmion. These results demonstrate the importance of studying the intrinsic properties of quantum states that has been largely overlooked.
一种不同类型的拓扑激发,即畴壁(DW)斯格明子的检测与表征,已受到越来越多的关注,因为畴壁在从凝聚态物质到粒子物理学和宇宙学中无处不在。在此,我们给出实验证据,证明DW斯格明子是量子霍尔铁磁体中由长程库仑相互作用稳定的基态。我们开发了一种替代方法,利用非局部电阻测量以及局部核磁共振探针来测量低电流诱导的动态核极化效应,从而在平衡条件下表征DW。DW中核自旋弛豫对温度、填充因子、准粒子局域化和有效磁场的依赖性,使我们能够根据DW斯格明子的维格纳固体来解释这种基态及其可能的相变。这些结果证明了研究在很大程度上被忽视的量子态固有特性的重要性。