Strategic blueprints from the community that chart the path forward—offering clear guidance, practical solutions, and milestones to tackle the biggest challenges in quantum science.

Roadmap: The dual challenge of building quantum computers and finding their applications is addressed in a holistic way that calls for coordinated community actions.

Roadmap: The integration of diverse physical platforms into functioning quantum networks is discussed, highlighting pathways to accelerate the development of quantum interconnects.

Roadmap: The principles and implementation of quantum simulators are discussed, outlining their near- and long-term prospects to achieve scientific and technological breakthroughs.

A fault-tolerant quantum computation hardware based on superconducting qubits is explored, and a guide for upcoming experimental efforts is laid out.

A detailed account on how quantum simulators and quantum computers can help explore the fundamental constituents of matter and energy, from the smallest to the largest structures in the Universe.

Quantum algorithms and quantum machine learning could assist high-energy physics, ranging from studying neutrino oscillations to reconstructing particle trajectories in colliders.

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