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This review article examines how quantum technologies are advancing particle physics research through two primary avenues: quantum computing for solving complex dynamical problems that are intractable with classical methods, and quantum-enhanced detection systems that achieve unprecedented sensitivity for searching for ultralight particles, gravitational waves, and physics beyond the Standard Model. The developments enable exploration of nonperturbative dynamical processes and parameter regimes previously inaccessible to conventional experimental approaches.
Why it matters
These quantum technology applications could revolutionize our ability to detect and study fundamental particles and forces that have eluded conventional detection methods, potentially leading to discoveries of new physics beyond our current Standard Model and advancing our understanding of the universe's fundamental structure.
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⚠️ Preprint – Noch nicht peer-reviewed
Dieser Artikel wurde noch nicht von unabhängigen Experten begutachtet. Die Ergebnisse sind vorläufig und sollten mit Vorsicht interpretiert werden.
Abstract: We review recent advances in particle physics enabled and motivated by the rapid progress of quantum technologies. The continued development of quantum computing toward large-scale, fault-tolerant systems has the potential to address dynamical problems that remain extremely challenging for classical computational approaches, opening new avenues for studying nonperturbative dynamical processes. Tabletop detectors and quantum-enhanced technologies have reached unprecedented sensitivities, enabling novel searches for ultralight particles, gravitational waves, and other physics beyond the Standard Model in parameter regimes previously inaccessible to conventional instrumentation. Taken together, these developments highlight a rapidly evolving landscape in which quantum technologies are beginning to reshape fundamental physics. We aim to synthesize recent progress and illuminate the opportunities they present for advancing particle physics in the coming years.
Source: Particle Physics Driven by Quantum Technology – Quantum Simulations and Quantum Sensing