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OEwaves laser

Ridiculously narrow-linewidth lasers

OEwaves' Hi-Q® Lasers are revolutionizing precision technologies, enabling breakthroughs in quantum computing, sensing, advanced metrology and beyond.
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Laser Phase Lock Box

This system enables users to phase-lock two independent lasers with a frequency offset ranging from 250 MHz to 50 GHz, delivering unmatched stability and precision.
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Stabilized Reference Cavity

Speed up development of deployed laser systems with the compact, fiber coupled laser cavity.​​ Optimized for quantum and sensing applications, the cavity provides stability up to 10^-13 at 1 s.
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RF-THz Oscillators

OEwaves’ patented oscillators deliver ultra-pure microwave to mm-wave signals with low phase noise, compact design, and built-in resistance to vibration, thanks to a versatile opto-electronic architecture.
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Test & Measurement Systems

Analyze optical and RF/MW phase noise, frequency stability, and system performance with confidence.
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Whispering Gallery Mode Resonators

These millimeter-scale whispering gallery mode (WGM) resonators exhibit ultra-high quality factors (Q) and finesse, surpassing the capabilities of traditional bulk or integrated optical resonators. Demonstrated performance includes Q-factors exceeding 10¹¹ and finesse values over 17,500.
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Opto-Electronic Excellence

All OEwaves products are designed to deliver industry-leading performance across critical photonic functions, from ultra-stable signal generation to precision measurement and advanced optical systems.

SWaP-C Optimization

Our SIL lasers are engineered with ultra-compact size, lightweight construction and low power draw, empowering integration in quantum and mission-critical environments.

Ultra-Low Noise

Achieving sub-Hertz linewidths with remarkably low phase and amplitude noise, our systems provide the coherence and stability essential for quantum-precision performance.

Quantum Scalability

Our compact, efficient design supports broad replication across quantum computing, communication, and sensing networks - enabling uniform performance at scale.

Wavelength Flexibility

Custom wavelength manufacturing across the UV and visible spectra allows for perfect alignment with atomic and ionic transitions in advanced quantum systems.

Streamlined Integration

With superior frequency tunability and high actuation bandwidth, these lasers eliminate the need for bulky modulation components, streamlining control and system design.

Turnkey Deployment

Our products combine robust performance with turnkey availability, empowering a multitude of applications with immediate deployment and reliable operation.

The future of precision photonics

Custom Solutions

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With a portfolio of over 126 intellectual property cases and a team of world-class scientists and engineers, we’re equipped to invent, design, and manufacture photonic solutions that lead the industry and push boundaries.
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Whispering Galleries

Whispering gallery waves were first properly described in 1878 by Lord Rayleigh, who corrected the earlier misconception that whispers could only be heard across the dome of St Paul’s Cathedral.

He explained that sound travels along the circular gallery through a series of specular reflections, forming chords that cling to the walls and decay in intensity inversely with distance, rather than by the inverse square law seen with point sources. This explains how whispers remain audible around the entire gallery.
OEwaves revolutionized whispering gallery mode (WGM) resonators by pioneering ultra-high Q crystalline microresonators, enabling unprecedented performance for photonics applications across sensing, communications, and beyond.