Quantum computing
Quantum computing platforms often rely on photonic components for qubit generation, routing, and measurement. Achieving this level of optical stability typically requires piezoelectric motion technologies capable of nanometer-scale control. Xeryon’s vacuum-compatible piezo stages offer nanometer-accurate positioning for mirrors, lenses, and optical couplers, ensuring stable light paths in even the most complex optical circuits.
Compact - Precise - Stable - Reliable - Vacuum Compatible
Example applications
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Laser alignment & stabilization for ion trap and neutral atom quantum computers
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Optical component positioning (mirrors, lenses, beam splitters) in quantum photonics setups
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Beam steering and switching for controlling light paths
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Cavity tuning and interferometry in quantum optics experiments
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Fiber coupling for quantum communication links and photonic integration


When precision is not enough
Xeryon stages combine nanometer and microradian resolution with a self-locking design. Once in position, no power is required to hold it - eliminating drift, minimizing heat and energy consumption, and ensuring your system stays free from resonance and noise.
True durability
Xeryon's products are all direct-drive, resulting in a simple, reliable design with backlash-free operation. Compared to other types of piezo motors, Xeryon's ultrasonic piezo motors last more than a hundred times as long.
A reliable motion partner
Many OEMs turn to Xeryon when moving away from traditional piezo stage suppliers. With shorter lead times, competitive pricing, and responsive support, we provide a dependable alternative without compromising on performance or precision.
Made in Europe. Trusted globally.
Want to discuss your quantum motion project?
We look forward to exploring a possible collaboration. Get in touch through e-mail, phone or video:




