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From the 1 of 16 linked papers with an AI index.

activity
20242026
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16 papers

cond-mat.dis-nn2026

Logarithmically Correlated Landscapes and Localization in Non-Hermitian Quasicrystals

Xianqi Tong, Qifeng Ding, Xiaosen Yang

We study a one-dimensional Hatano-Nelson ring whose nonreciprocal hopping is quasiperiodically modulated through zero. A gauge transformation maps every eigenstate onto a single sp…

cond-mat.dis-nn2026

Analytical mobility edge in nonreciprocal quasiperiodic lattices with next-nearest-neighbor hopping

Wenmin Wang, Xiaosen Yang, Xianqi Tong

The paper derives an analytical expression for the energy-dependent mobility edge in a non‑Hermitian, nonreciprocal extension of the Aubry‑André quasiperiodic lattice, showing how…

cond-mat.mes-hall2026

Interplay of Quasiperiodic Criticality and the Non-Hermitian Skin Effect

Zhangyuan Chen, Xianqi Tong, Xiaosen Yang

Quasiperiodic lattices can host critical eigenstates, whereas nonreciprocal hopping in non-Hermitian lattices can induce non-Hermitian skin effect. In this work, we investigate loc…

quant-ph2026

Finer sub-Planck structures and displacement sensitivity of SU(1,1) circular states

Naeem Akhtar, Jia-Xin Peng, Tariq Aziz +2

Quantum states with sub-Planck features exhibit sensitivity to phase-space displacements beyond the standard quantum limit, making them useful for quantum metrology. In the context…

quant-ph2026

Decoherence across phase-space scales: From compass states to general quantum states

Naeem Akhtar, Jia-Xin Peng, Tan Hailin +2

Environmental decoherence occurs when a quantum system interacts with its surroundings, progressively reducing quantum interference and coherence, complicating the preservation of…

quant-ph2026

Biorthogonal dynamical quantum phase transitions in non-Hermitian topological superconductors

Haoran Gu, Yubo Zhao, Siyuan Cheng +3

Dynamical quantum phase transitions in non-Hermitian systems pose fundamental challenges due to the intrinsic biorthogonality of their eigenstates. In this work, we extend a biorth…