collaborators

6 papers

cond-mat.mes-hall2026

Programmable, Spontaneous Superlattice Memory in a Monolayer Topological Insulator

Jian Tang, Thomas Siyuan Ding, Shuhan Ding +24

Memory is a foundational concept across disciplines, from neurobiology and electronics to artificial intelligence and quantum gravity. In materials, memory effects typically arise…

cond-mat.str-el2026

Visualization of Tunable Electronic Structure of Monolayer TaIrTe

Sandy Adhitia Ekahana, Aalok Tiwari, Souvik Sasmal +16

Monolayer TaIrTe has emerged as an attractive material platform to study intriguing phenomena related to topology and strong electron correlations. Recently, strong interaction…

cond-mat.str-el2025

Quantum Geometry Phenomena in Condensed Matter Systems

Anyuan Gao, Naoto Nagaosa, Ni Ni +1

Quantum geometry, which describes the geometry of Bloch wavefunctions in solids, has become a cornerstone of modern quantum condensed matter physics. The quantum geometrical tensor…

cond-mat.str-el2025

Interaction-Driven Topological Transitions in Monolayer TaIrTe

Jiangxu Li, Jian Tang, Louis Primeau +9

Discovering materials that combine topological phenomena with correlated electron behavior is a central pursuit in quantum materials research. Monolayer TaIrTe has recently eme…

cond-mat.mes-hall2025

Magnetization Dependent In-plane Anomalous Hall Effect in a Low-dimensional System

I-Hsuan Kao, Ravi Kumar Bandapelli, Zhenhong Cui +17

Anomalous Hall Effect (AHE) response in magnetic systems is typically proportional to an out-of-plane magnetization component because of the restriction imposed by system symmetrie…

cond-mat.mes-hall2025

Observation of the Axion quasiparticle in 2D MnBiTe

Jian-Xiang Qiu, Barun Ghosh, Jan Schütte-Engel +32

In 1978, Wilczek and Weinberg theoretically discovered a new boson-the Axion-which is the coherent oscillation of the field in QCD. Its existence can solve multiple fundamenta…