Space-Curved Quantum Control Beyond the Rotating Wave Approximation for Driven Two-Level Systems

By Chase, Adarsh, Shivam, Aarya

EXTERNAL MENTOR: Hunter Nelson, Virginia Tech Center for Quantum Information Science and Engineering

A common tool for simplifying driven two-level systems is the rotating wave approximation (RWA). It applies when the driving pulse is weak compared to the transition energy difference and has a frequency near it.

However, in some instances, it would be interesting to go beyond this assumption and account for more general driving regimes.

Can we use the SCQC framework to account for noise that is induced under the violation of the RWA assumption?




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