A new study published in Nature demonstrates a significant breakthrough in quantum computing, where researchers successfully maintained quantum coherence in a multi-qubit system for over one minute at room temperature. This marks a substantial improvement over previous records, which were typically measured in seconds and required extreme cooling. The team achieved this by using a …
A new study published in Nature demonstrates a significant breakthrough in quantum computing, where researchers successfully maintained quantum coherence in a multi-qubit system for over one minute at room temperature. This marks a substantial improvement over previous records, which were typically measured in seconds and required extreme cooling. The team achieved this by using a novel material based on engineered diamond vacancies, which are less susceptible to environmental noise. The extended coherence time is a critical step toward building practical, fault-tolerant quantum computers capable of solving complex problems in chemistry, materials science, and cryptography. While challenges remain in scaling up the number of qubits and integrating them into functional processors, this research provides a promising pathway for developing more stable and accessible quantum hardware. Read the full article at: https://example.com/full-article
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