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From the 1 of 33 linked papers with an AI index.

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20242026
most citedRobust and optimal control of open quantum systems

10 citations · 12 across the 5 of their papers we have counts for

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quant-ph2026

Quantum Optical Reinforcement Learning via Spectrum-Resolved Hong-Ou-Mandel Interference

Shaojun Wu, Jiahua Xu, Shan Jin +7

The paper presents a spectrum‑resolved Hong‑Ou‑Mandel (SR‑HOM) optical neural network that uses photon spectral modes as trainable resources to build a compact actor‑critic reinfor…

quant-ph20261 cited

Experimental demonstration of entanglement pumping with bosonic logical qubits

Jie Zhou, Chuanlong Ma, Yifang Xu +9

Entanglement is crucial for quantum networks and computation, yet maintaining high-fidelity entangled quantum states is hindered by decoherence and resource-intensive purification…

quant-ph2026

Optimal control with flag qubits

Liang-Xu Xie, Lui Zuccherelli de Paula, Weizhou Cai +6

High-fidelity quantum operations are the cornerstone of fault-tolerant quantum computation. In open quantum systems, traditional optimal control only passively resists decoherence,…

quant-ph202610 cited

Robust and optimal control of open quantum systems

Zi-Jie Chen, Hongwei Huang, Lida Sun +9

Recent advancements in quantum technologies have highlighted the importance of mitigating system imperfections, including parameter uncertainties and decoherence effects, to improv…

quant-ph2026

Quantum Confocal Microscopy in Fock Space with a 19 dB Metrological Gain

Ziyue Hua, Chuanlong Ma, Yilong Zhou +12

Quantum metrology promises measurement precision beyond classical limits by exploiting large-scale quantum states, yet realizing this advantage faces two fundamental challenges: th…

quant-ph2026

Fault-tolerant preparation of arbitrary logical states in the cat code

Zi-Jie Chen, Weizhou Cai, Liang-Xu Xie +5

Preparing high-fidelity logical states is a central challenge in fault-tolerant quantum computing, yet existing approaches struggle to balance control complexity against resource o…