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Quantum computing

Utility-scale quantum computing will require thousands of precisely controlled qubits. Monarch Quantum delivers compact, reliable photonics hardware designed to make that scale possible.

What is quantum computing?

Quantum computing uses the principles of quantum mechanics to process information in ways that are fundamentally different from classical computing. Quantum computers use qubits, which can leverage superposition, entanglement, and interference to address certain problems that are difficult for conventional systems.

Leading quantum computing platforms rely on precisely controlled light to initialize, manipulate, and measure qubits. As these systems grow, their photonics hardware must become more compact, stable, repeatable, and manufacturable.

How does Monarch Quantum build quantum computing systems for scale?

Monarch Quantum develops quantum light engines for quantum computing platforms. Our systems combine lasers, optical modulation, beam delivery, control electronics, firmware, and built-in testing into compact, modular hardware.

By replacing complex optical benches with integrated systems, we help quantum system integrators reduce complexity, improve reliability, and accelerate the transition from laboratory prototypes to commercial-scale quantum computers.

Real world impact

Quantum computing could help address complex problems that are difficult or impractical for conventional computers.

Drug discovery

Model molecular interactions and explore potential drug candidates with greater precision.

Materials science

Simulate quantum materials to support advances in energy, electronics, and manufacturing.

Complex optimization

Explore large sets of variables for applications in logistics, finance, scheduling, and resource planning.

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