Efficient high-quality photon pair generation in modal phase-matched thin-film lithium niobate micro-ring resonators
arXiv:2508.05983 · doi:10.1515/nanoph-2025-0211
Abstract
Efficient generation of high-quality photon pairs is essential for modern quantum technologies. Micro-ring resonator is an ideal platform for studying on-chip photon sources due to strong nonlinear effect, resonant-enhanced optical fields, and high integration. Thin-film lithium niobate (TFLN) micro-ring resonators with periodically poled quasi-phase matching have shown high-quality photon pair generation. However, periodic poling technology remains expensive and requires complex fabrication hindering its scalability and capability for practical application in nonlinear photonic devices. To address this, we propose a scalable approach using TFLN micro-ring resonators based on modal phase matching to achieve cost-effective, efficient high-quality photon-pair generation, significantly simplifying fabrication. We achieved pair generation rates up to 40.2 MHz/mW through spontaneous parametric down-conversion, with coincidence-to-accidental ratios exceeding 1200. By combining micro-ring resonance enhancement with modal phase matching, our approach reduces device size and fabrication cost while maintaining high nonlinear efficiency. These results advance the development of compact, efficient on-chip photon sources for next-generation nonlinear and quantum photonic applications.
18pages, 6 figures. Nanophotonics, 2025
References in corpus (21)
- Quantum-enhanced measurements: beating the standard quantum limit
- On-demand semiconductor single-photon source with near-unity indistinguishability
- Monolithic photonic circuits for Kerr frequency comb generation, filtering and modulation
- Entangled photon-pair generation in periodically-poled thin-film lithium niobate waveguides
- Ultrathin quantum light source enabled by a nonlinear van der Waals crystal with vanishing interlayer-electronic-coupling
- Chip-integrated visible-telecom photon pair sources for quantum communication
- PPLN Waveguide for Quantum Communication
- High-efficiency and broadband electro-optic frequency combs enabled by coupled micro-resonators
- Metasurface-assisted phase-matching-free second harmonic generation in lithium niobate waveguides
- Photon Pair Generation in Silicon Micro-Ring Resonator with Reverse Bias Enhancement
- Ultra-bright Quantum Photon Sources on Chip
- Coherent two-octave-spanning supercontinuum generation in lithium-niobate waveguides
- Semiconductor devices for entangled photon pair generation: a review
- Ultra-bright entangled-photon pair generation from an AlGaAs-on-insulator microring resonator
- Silicon Photonic Entangled Photon-Pair and Heralded Single Photon Generation with CAR 12,000 and 0.006
- Ultra-low-power second-order nonlinear optics on a chip
- Optical parametric generation in a lithium niobate microring with modal phase matching
- Efficient photon-pair generation in layer-poled lithium niobate nanophotonic waveguides
- Efficient single-photon pair generation by spontaneous parametric down-conversion in nonlinear plasmonic metasurfaces
- Efficient photon-pair generation empowered by dual quasi-bound states in the continuum
- Exciton-Enhanced Spontaneous Parametric Down-Conversion in Two-Dimensional Crystals