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Phys.org

New buried-growth process enables 2D arrays of position- and orientation-controlled diamond qubits

Scientists have created a new method to produce precise arrays of diamond qubits using a buried-growth process. The technique involves using nitrogen-radical selective etching during microwave plasma chemical vapor deposition to improve control over the positioning and orientation of nitrogen-vacancy centers. This advancement allows for more consistent and scalable production of quantum bits in diamond, which could support future quantum computing applications.

What happened

Scientists have created a new method to grow diamond qubits with precise control over their position and orientation using a process called buried-growth.

Why it matters

This advancement could improve the reliability and scalability of quantum computing technologies by enabling more consistent and accurate qubit placement.

Why it belongs here

The development highlights progress in creating stable, high-quality materials for quantum technologies, offering a practical step toward more powerful and reliable computing systems.

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