activity
20242026
collaborators

5 papers

cond-mat.mtrl-sci2026

Evolution from Landau Quantization to Discrete Scale Invariance Revealed by Quantum Oscillations in Topological Materials

Jiayi Yang, Nannan Tang, Yunxing Li +10

Dirac materials have been a unique solid state platform for exploring relativistic quantum phenomena including supercritical atomic collapse, which leads to emergent discrete scale…

cond-mat.supr-con2026

Emergent quantum phenomena via phase-coherence engineering in infinite-layer nickelate superconductors

Haoran Ji, Zheyuan Xie, Xiaofang Fu +8

Dimensionality of a physical system, conventionally an invariant geometric characteristic, fundamentally governs the universality class of phase transitions and the landscape of em…

cond-mat.supr-con2025

Exceedingly large in-plane critical field of finite-momentum pairing state in bulk superlattices

Junfa Lin, Ziqiao Wang, Hongyi Yan +15

Magnetic flux profoundly influences the phase factor of charge particles, leading to exotic quantum phenomena. A recent example is that the orbital effect of magnetic field could i…

cond-mat.supr-con2025

Dimensionality-Driven Anomalous Metallic State with Zero-field Nonreciprocal Transport in Layered Ising Superconductors

Yanwei Cui, Zenglin Liu, Qin Liu +10

The anomalous metal state (AMS), observed in failed superconductors, provides insights into superconductivity and quantum criticality, with studies revealing unconventional quantum…

cond-mat.supr-con2024

Quantum Griffiths singularity in a three-dimensional superconductor to Anderson critical insulator transition

Shichao Qi, Yi Liu, Ziqiao Wang +11

Disorder is ubiquitous in real materials and can have dramatic effects on quantum phase transitions. Originating from the disorder enhanced quantum fluctuation, quantum Griffiths s…