DOE OSTI · 2000495
QPress: Quantum Press for Next-Generation Quantum Information Platforms
Abstract
Quantum information science (QIS) holds promise for revolutionizing computation, communication, and sensing. Of course, realizing this promise requires material platforms that can host quantum bits with pre-assigned characteristics that are uniquely attuned to such functionalities. For example, quantum bits for computation should be as immune as possible to any external perturbation, controllable on short time scales and scalable. In contrast, quantum bits for local metrology should be as small as possible and sensitive to specific fields of interest. While tremendous advances in QIS have been achieved in recent years, the underlying properties of the materials that host these quantum bits remains one of the key limitations in their performance.
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Yacoby, Amir, Kim, Phillip, Kaxiras, Tim, Wilson, William, Checkelsky, Joseph, Jarillo-Herrero, Pablo, Aspuru-Guzik, Alán. 2024-03-05. QPress: Quantum Press for Next-Generation Quantum Information Platforms. https://doi.org/10.2172/2000495
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