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From the 1 of 14 linked papers with an AI index.

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14 papers

quant-ph2026

Preserving Heisenberg-Limited Metrological Information during Storage via Correlated-Noise Correction

Hang Xu, Xue-Ke Song, Jingzheng Huang +2

Quantum error correction has become an indispensable tool for restoring Heisenberg-limited precision in noisy quantum metrology. Existing protocols, however, almost exclusively foc…

quant-ph2026

Converting Quantum Sensing Noise into Erasures

Xingyu Liu, Zhaotong Cui, Binke Xia +4

The paper introduces a passive scheme that converts certain quantum sensing noise into erasures, enabling robust sensing without detailed noise knowledge, and demonstrates the meth…

physics.optics2026

Accelerating ground state search of spatial photonic Ising machines with genetic-simulated annealing hybrid algorithm

Ze Zheng, Ruhui Ni, Jingyi Zhao +6

Spatial photonic Ising machines (SPIMs) based on spatial light modulators (SLMs) have emerged as highly effective solvers for many tasks, including combinatorial optimization probl…

physics.optics2026

Incorporating rank-free coupling and external field via an incoherent modulated spatial photonic Ising machine

Ze Zheng, Yuegang Li, Hang Xu +3

Spatial photonic Ising machines offer a novel optical platform for optimization and spin-model simulation, but existing diffraction-based schemes rely on auxiliary spins or multipl…

physics.optics2026

Noise-resilient nanophotonic gyroscope with sub-prad phase resolution

Yu Tao, Xinhang Li, Jingzheng Huang +5

Optical gyroscopes based on the Sagnac effect are the cornerstone of precision orientation and navigation. However, their bulky form factors prevent deployment in emerging mobile a…

physics.atom-ph2026

Sensing Low-Frequency Field with Rydberg Atoms via Quantum Weak Measurement

Ding Wang, Shenchao Jin, Xiayang Fan +5

Recently, Rydberg atom has emerged as an attractive choice to realize quantum sensing of low-frequency electric field. The progress so far has mostly utilized the intensity and pha…