Modulation– tag –
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Photonics
Cambridge Spinoff CamGraPhIC Secures Funding to Advance Graphene-Based Photonic Transceivers for AI Interconnects and Energy Reduction
Cambridge Review UK Overview Cambridge spinoff CamGraPhIC has secured funding to advance its graphene-based photonic transceivers, aiming to enhance AI interconnectivity and reduce energy consumption. This move signals a broader industry... -
Photonics
Ultra-Low-Voltage Thin-Film Lithium Niobate Modulator Supports 224 Gbit/s PAM-4 Signals for Compact Optical Transmitters
ResearchGate Unknown Overview Researchers have proposed and demonstrated an ultra-low-voltage thin-film lithium niobate (TFLN) electro-optic modulator featuring Gaussian-shaped dual-layer electrodes and a high-permittivity cladding. This... -
Photonics
TechRadar: Next-Gen AI Networks Adapt to Inference Curve with 1.6 Tb/s/Wavelength Coherent Optical Platforms
TechRadar UK Overview A TechRadar article highlights the necessity for future AI networks to fundamentally adapt to the rapid evolution of AI inference workloads. Data center connectivity is being re-architected with high-bandwidth coher... -
Photonics
1.6T Silicon Photonics Transceivers Enter Trials at Major Cloud AI Data Centers, Accelerating Towards 2025 Mass Production
EE Times USA Overview 1.6T optical transceivers based on silicon photonics technology have reportedly commenced trial deployments at AI data centers operated by leading cloud providers. These transceivers deliver the ultra-high bandwidth... -
Photonics
Material-Anisotropy-Driven Topological Optical Lattices Generated on Thin-Film Lithium Niobate Open Door to Next-Gen Photonic Devices
arXiv USA Overview This research explores the generation of topological optical lattices by leveraging material anisotropy in X-cut thin-film lithium niobate (TFLN) microring vortex emitters. The intrinsic birefringence in TFLN introduce... -
Photonics
The 1.6T Era: Silicon Photonics, InP, and Thin-Film Lithium Niobate Clash for the ‘Heart’ of Optical Modules
[Analysis/Blog] Global Overview As the 1.6T era unfolds, silicon photonics (SiPh), indium phosphide (InP), and thin-film lithium niobate (TFLN) are fiercely competing as core materials for next-generation optical modulators. SiPh offers ... -
Photonics
HyperLight Secures $80 Million Series C Funding Led by MediaTek to Accelerate Thin-Film Lithium Niobate PIC Manufacturing for AI Infrastructure
Business Wire USA Overview HyperLight announced an $80 million Series C funding round led by MediaTek to accelerate the deployment of its thin-film lithium niobate (TFLN) photonic integrated circuit (PIC) platform for AI infrastructure. ... -
Photonics
Qatar Investment Authority Fuels HyperLight’s $80M Round, Accelerating Thin-Film Lithium Niobate PICs for AI Data Centers
Middle East AI News カタール Overview The Qatar Investment Authority (QIA) has participated in HyperLight's $80 million Series C funding round, strategically investing in its thin-film lithium niobate (TFLN) photonic integrated circuit (... -
Photonics
Marvell Highlights Importance of Plasmonics for Higher Bandwidth Optics in the AI Era
Marvell Blog USA Overview Marvell, in its official blog, discussed the critical role of plasmonics technology as a key enabler for high-bandwidth optical communication in the AI era. Plasmonics facilitates higher integration, ultrafast m... -
Photonics
International Research Team Develops Ultrafast, Low-Power Chip-Scale Modulators Using Self-Assembled Plasmonic-Organic Hybrid Nanocavities
National Science Review UK Overview An international research team, led by the University of Oxford, has successfully developed an ultrafast, low-power chip-scale modulator utilizing self-assembled plasmonic-organic hybrid nanocavities. ...