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20182026
most citedHeralding Quantum Entanglement between Two Room-Temperature Atomic Ensembles

2 citations · 2 across the 8 of their papers we have counts for

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quant-ph2026

A Chip-scale Space-time Multiplexed Gaussian Boson Sampling Processor Beyond 10,000 Photons

Yu-Xuan Fu, He-Yu Shen, Ke-Ming Hu +33

Gaussian boson sampling (GBS) has emerged as a leading photonic paradigmfor demonstrating quantum computational advantage. Nevertheless, state-ofthe-art GBS setups face practical b…

quant-ph2025

Instantaneous velocity during quantum tunnelling

Xiao-Wen Shang, Jian-Peng Dou, Feng Lu +3

Quantum tunnelling, a hallmark phenomenon of quantum mechanics, allows particles to pass through the classically forbidden region. It underpins fundamental processes ranging from n…

quant-ph2025

Collision-assisted information scrambling on a configurable photonic chip

Xiao-Wen Shang, Shu-Yi Liang, Guan-Ju Yan +7

Quantum interference and entanglement are in the core of quantum computations. The fast spread of information in the quantum circuit helps to mitigate the circuit depth. Although t…

quant-ph2024

A Test of Empty Wave via Quantum Memory in a Weak Measurement Scheme

Jian-Peng Dou, Feng Lu, Hao Tang +2

In quantum mechanics, a long-standing question remains: How does a single photon traverse double slits? One intuitive picture suggests that the photon passes through only one slit,…

quant-ph2024

Regeneration of Spin Wave in Atomic Vapor

Jian-Peng Dou, Feng Lu, Xiao-Wen Shang +2

Conventionally, atomic vapor is perceived as a non-living system governed by the principles of thermodynamics and statistical physics. However, the demarcation line between life an…

quant-ph20202 cited

Heralding Quantum Entanglement between Two Room-Temperature Atomic Ensembles

Hang Li, Jian-Peng Dou, Xiao-Ling Pang +6

Establishing quantum entanglement between individual nodes is crucial for building large-scale quantum networks, enabling secure quantum communication, distributed quantum computin…