6 papers
Selective stabilization of antiferromagnetic orders in FeTe films via local strain engineering
Hao Xu, Jing Jiang, Xuesong Gai +5
The parent compound FeTe hosts a complex magnetic landscape that is highly susceptible to lattice distortions. Although theoretical models have predicted a bicollinear to dimer ant…
Tailoring pure valley-Zeeman spin-orbit coupling in WSe-encapsulated monolayer graphene
Yaqing Han, Siqi Jiang, Jingkuan Xiao +17
Engineering proximity effects in twisted van der Waals heterostructures offers a powerful platform for designing electronic properties. While theoretical predictions of quantum int…
Moiré spintronics: Emergent phenomena, material realization and machine learning accelerating discovery
Fengjun Zhuo, Zhenyu Dai, Kai Chang +2
Twisted van der Waals (vdW) materials have emerged as a promising platform for exploring exotic quantum phenomena and engineering novel material properties in two dimensions, poten…
All-Electrical Self-Switching of van der Waals Chiral Antiferromagnet
Junlin Xiong, Jiawei Jiang, Yanwei Cui +13
Antiferromagnets have garnered significant attention due to their negligible stray field and ultrafast magnetic dynamics, which are promising for high-density and ultrafast spintro…
The interplay of ferroelectricity and magneto-transport in non-magnetic moiré superlattices
Siqi Jiang, Renjun Du, Jiawei Jiang +20
The coupling of ferroelectricity and magnetic order provides rich tunability for engineering material properties and demonstrates great potential for uncovering novel quantum pheno…
Anomalous Meets Topological Hall Effect in Cr2Ge2Te6 Heterostructures
Xiaofan Cai, Yaqing Han, Jiawei Jiang +21
Introducing topologically protected skyrmions in graphene holds significant importance for developing high-speed, low-energy spintronic devices. Here, we present a centrosymmetric…