activity
20242026
collaborators

7 papers

quant-ph2026

Fast Adiabatic Quantum Gates via Hyperfine Intermediate States

Jiayin Fan, Xingdong Zhao, Manqi Zhang +2

The appeal of adiabatic quantum computing lies in its intrinsic robustness against various technical imperfections, making it attractive for many quantum information applications.…

quant-ph2026

Intelligent Optimal Control of Rydberg Gates with Incremental-Update Deep Reinforcement Learning

Yue Cai, Hanlin Zhang, Keye Zhang +1

Deep reinforcement learning (DRL), acting as a novel and powerful paradigm for quantum optimal control, offers transformative opportunities for advancing neutral-atom quantum compu…

quant-ph2025

Mitigating the phase-mismatch effect in non-resonant four-wave mixing enabled by optimal control

Ning Jia, Hamid R. Hamedi, Jing Qian

Phase-mismatch in nonlinear optical processes can severely limit the propagation and conversion efficiency of light fields. Here, we present an efficient optimal-control strategy t…

physics.optics2025

Efficient and tunable frequency conversion using periodically poled thin-film lithium tantalate nanowaveguides

Simin Yu, Mingyue Qi, Huizong Zhu +4

Thin-film lithium tantalate (TFLT) has recently emerged as a promising photonic platform for chip-scale nonlinear optics due to its weaker photorefraction, higher optical damage th…

quant-ph2025

Quantum-preserved transport of excitations in Rydberg-dressed atom arrays

Panpan Li, Jing Qian, Weiping Zhang

To transport high-quality quantum state between two distant qubits through one-dimensional spin chains, the perfect state transfer (PST) method serves as the first choice, due to i…

quant-ph2024

Active robustness against the detuning-error for Rydberg quantum gates

Qing-Ling Hou, Han Wang, Jing Qian

Error suppression to the experimental imperfections is a central challenge for useful quantum computing. Recent studies have shown the advantages of using single-modulated pulses b…