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From the 1 of 8 linked papers with an AI index.

activity
20242026
collaborators

8 papers

physics.optics2026

Non-Abelian holonomic transformations in digitally coupled acoustic waveguides guided by the global adiabatic criterion

Jin-Kang Guo, Jia Li, Jin-Lei Wu +1

The paper demonstrates an acoustic waveguide platform that implements compact non‑Abelian holonomic transformations using a global adiabatic criterion, achieving fast Pauli‑X and H…

quant-ph2026

Non-Abelian Thouless pumping based on the global adiabatic criterion in Rydberg synthetic lattices

Jin-Kang Guo, Jin-Lei Wu, Chuan-Cun Shu

We study a quantum implementation of non-Abelian Thouless pumping in Lieb lattices using Rydberg synthetic dimensions. The lattice is encoded in twelve selected microwave-coupled R…

quant-ph2026

Liouvillian spectral control for fast charging of quantum batteries

Hang Zhou, Jia-Wei Huang, Chuan-Cun Shu

Quantum batteries, which use quantum systems to store and deliver energy, are promising for next-generation energy storage. However, optimizing charging strategies and understandin…

quant-ph2026

Universal qutrit control in asymmetric-top molecules

Qian-Qian Hong, Zhi-Jian Zheng, Zhe-Jun Zhang +2

We present a theoretical framework for universal single-qutrit control in asymmetric-top molecules, advancing molecular quantum information processing. In this approach, the qutrit…

quant-ph2026

Analytical two-pulse control of universal single-qubit gates in rotational ultracold NaCs molecules

Qi Chen, Hao-Xuan Luo, Jin-Kang Guo +3

Complex control protocols and sensitivity to experimental imperfections have limited the practical implementation of quantum gate operations. Here, we present an analytical framewo…

quant-ph2025

Precise Quantum Control of Molecular Rotation Toward a Desired Orientation

Qian-Qian Hong, Daoyi Dong, Niels E. Henriksen +3

The lack of a direct map between control fields and desired control objectives poses a significant challenge in applying quantum control theory to quantum technologies. Here, we pr…