most citedCrystallizing Kagome artificial spin ice

26 citations · 53 across the 6 of their papers we have counts for

collaborators

6 papers

cond-mat.mes-hall2024

Topological geometric frustration in a cube-surface artificial spin ice

Zixiong Yuan, Wen-Cheng Yue, Peiyuan Huang +6

Artificial spin ices provide a controlled platform for investigating diverse physical phenomena, such as geometric frustration, magnetic monopoles, and phase transitions, via delib…

cond-mat.supr-con2024

Magnetic nonreciprocity in a hybrid device of asymmetric artificial spin-ice-superconductors

Chong Li, Peiyuan Huang, Chen-Guang Wang +15

Controlling the size and distribution of potential barriers within a medium of interacting particles can unveil unique collective behaviors and innovative functionalities. In this…

cond-mat.mes-hall2024★ 11 cited

Toroidic phase transitions in a direct-kagome artificial spin ice

Wen-Cheng Yue, Zixiong Yuan, Peiyuan Huang +13

Ferrotoroidicity, the fourth form of primary ferroic order, breaks both space and time inversion symmetry. So far, direct observation of ferrotoroidicity in natural materials remai…

cond-mat.supr-con2024★ 8 cited

Unconventional superconducting diode effects via antisymmetry and antisymmetry breaking

Chong Li, Yang-Yang Lyu, Wen-Cheng Yue +19

Symmetry-breaking plays a pivotal role in unlocking intriguing properties and functionalities in material systems. For example, the breaking of spatial and temporal symmetries lead…

cond-mat.mes-hall2024★ 8 cited

In-situ tunable giant electrical anisotropy in a grating gated AlGaN/GaN two-dimensional electron gas

Ting-Ting Wang, Sining Dong, Chong Li +14

Materials with in-plane electrical anisotropy have great potential for designing artificial synaptic devices. However, natural materials with strong intrinsic in-plane electrical a…

cond-mat.mes-hall2022★ 26 cited

Crystallizing Kagome artificial spin ice

Wen-Cheng Yue, Zixiong Yuan, Yang-Yang Lyu +13

Artificial spin ices are engineered arrays of dipolarly coupled nanobar magnets. They enable direct investigations of fascinating collective phenomena from their diverse microstate…