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I don't see a specific equation for "Coherence Stabilization" in the provided sources. The sources discuss coherence in quantum computing contexts, particularly the coherence times (T1 and T2) of qubits in IonQ's trapped ion quantum computers, which are between 10-100 seconds for T1 and about 1 second for T2. They also mention error suppression techniques like Fire Opal that can improve quantum circuit performance, but no specific equation for coherence stabilization is provided.
The sources discuss quantum dynamics through the Schrödinger equation, which describes time evolution of quantum systems, and mention techniques like Hamiltonian embedding for simulating high-dimensional dynamics, but these are not explicitly presented as equations for coherence stabilization.
Without a specific equation in the provided sources, I cannot confirm what equation you might be referring to for coherence stabilization before quantum hardware becomes a factor.
Sources
Leveraging near-term quantum hardware for simulating high-dimensional dynamics | AWS Quantum Technologies Blog
Improve quantum workload performance with Fire Opal error suppression for IonQ processors on Amazon Braket | AWS Quantum Technologies Blog
IonQ - Amazon Braket Quantum Computers - Amazon Web Services
Rigetti Computing - Amazon Braket Quantum Computers - Amazon Web Services
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