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20242026
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quant-ph2026

Photonic realization of a subgraph extraction in a quantum random network

Lijun Xia, Xuemei Gu, Kai Wang +5

Understanding how complex connectivity emerges in networks is a fundamental challenge in classical and quantum science. In classical random networks, complex subgraphs typically re…

quant-ph2026

Automated discovery of high-probability heralded schemes for path-entangled states

Marcello Armezzani, Colin P. Lualdi, Xuemei Gu +2

Entangled states of light lie at the heart of photonic quantum technologies, from distributed quantum communication to quantum-enhanced measurement and information processing. Thei…

quant-ph2026

Analytical Fock Representation of Two-Mode Squeezing for Quantum Interference

Xuemei Gu, Carlos Ruiz-Gonzalez, Mario Krenn

Two-mode squeezing is central to entangled-photon generation and nonlinear interferometry, yet standard perturbative low-gain treatments and Gaussian formalisms can obscure the int…

quant-ph2026

Automated discovery of high-dimensional multipartite entanglement with photons that never interacted

Sören Arlt, Mario Krenn, Xuemei Gu

Quantum entanglement across spatially separated network nodes is conventionally established through the distribution of photons from a common source or via entanglement swapping th…

quant-ph2025

Automated Discovery of Non-local Photonic Gates

Sören Arlt, Mario Krenn, Xuemei Gu

Interactions between quantum systems enable quantum gates, the building blocks of quantum information processing. In photonics, direct photon-photon interactions are too weak to be…

quant-ph2025

Tutorial: Hong-Ou-Mandel interference with Structured Photons

Tareq Jaouni, Xuemei Gu, Mario Krenn +2

The Hong-Ou-Mandel (HOM) effect, an effective two-photon interference phenomenon, is a cornerstone of quantum optics and a key tool for linear optical quantum information processin…