D-Wave Quantum Inc. has achieved a significant milestone in quantum computing by demonstrating a high-fidelity two-qubit gate for dual-rail erasure qubits, as published in a peer-reviewed research paper in Nature1. This breakthrough enables fast and reliable entanglement of two qubits, a crucial component for large-scale quantum computing. The research showcases the company's progress in developing quantum hardware, specifically dual-rail cavity qubits, which have the potential to overcome some of the limitations of current quantum computing systems. The two-qubit gate sequence, known as the SWS gate, has been experimentally demonstrated, and its performance has been characterized. This advancement has significant implications for the development of quantum computers, as it can lead to improved computational power and reduced error rates. So what matters to practitioners is that this breakthrough can potentially accelerate the development of quantum computers capable of solving complex problems that are currently unsolvable with classical computers.