DOE OSTI · 3683967
Multi-purpose quantum laboratories from superconducting circuits
Abstract
Superconducting circuits (SCs) are the cornerstone of modern quantum technology, enabling scalable computing through coherent control of macroscopic quantum states. Through a legacy that predates modern quantum computing, SCs have emerged as high-precision instruments for discovery. In this review, we highlight the role of SCs as general-purpose quantum laboratories, outlining the emerging landscape of correlated matter-circuit science. We review and unify the capabilities of superconducting quantum hardware across condensed matter, high energy and quantum information sciences. We trace the technical evolution of these architectures, illustrating how their foundational development has culminated in a toolkit for resolving the complexities of macroscopic quantum states.
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Arora, Arpit [UCLA, Los Angeles (main); UCLA; Haimson Res., Santa Clara], Been, Emily M. [UCLA, Los Angeles (main)], Munizzi, William [UCLA, Los Angeles (main)], Wang, Joel [New York U.], Patti, Taylor L. [Haimson Res., Santa Clara], Chou, Aaron [Fermilab; Chicago U.], Narang, Prineha [UCLA, Los Angeles (main); UCLA]. 2026-08-17. Multi-purpose quantum laboratories from superconducting circuits. https://www.osti.gov/biblio/3683967
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