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Ultra-broadband spectral and polarisation entanglement using dispersion-engineered nanophotonic waveguides

Ultra-broadband spectral and polarisation entanglement using dispersion-engineered nanophotonic waveguides

来源:Arxiv_logoArxiv
英文摘要

In this paper, we propose exploiting dispersion-engineered nanophotonic waveguides in generating unprecedented ultra-broadband spectral and polarisation entanglement using spontaneous four-wave mixing parametric processes. We developed a simplified theoretical quantum framework to investigate and analyse these interactions under pulse source excitations. Using aluminum gallium arsenide and thin-film lithium niobate waveguides, we anticipate to obtain photon pairs with high-dimensional frequency entanglement, characterised by Schmidt numbers as large as ~10$^8$, and covering the wavelength range 940--2730 nm (equivalent to a 210 THz bandwidth). Additionally, we show that Al$_{0.3}$Ga$_{0.7}$As waveguides with hybrid cladding can enable the generation of polarisation-entangled photon pairs with concurrence exceeding 0.93 across wavelengths from 1175 nm to 1750 nm, spanning almost across all the telecommunication bands with only approximately 27 nm window inevitable-degradation around the pump wavelength. We envisage that these introduced integrated on-chip sources will significantly advance quantum photonic technologies, enabling breakthroughs in multi-channel quantum networking and scalable quantum information systems.

Mahmoud Almassri、Mohammed F. Saleh

物理学半导体技术

Mahmoud Almassri,Mohammed F. Saleh.Ultra-broadband spectral and polarisation entanglement using dispersion-engineered nanophotonic waveguides[EB/OL].(2025-06-21)[2025-07-09].https://arxiv.org/abs/2506.17819.点此复制

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