Journal article
Atomically engineered electron spin lifetimes of 30 s in silicon
TF Watson, B Weber, YL Hsueh, LCL Hollenberg, R Rahman, MY Simmons
Science Advances | AMER ASSOC ADVANCEMENT SCIENCE | Published : 2017
Open access
Abstract
Scaling up to large arrays of donor-based spin qubits for quantum computation will require the ability to perform high-fidelity readout of multiple individual spin qubits. Recent experiments have shown that the limiting factor for high-fidelity readout of many qubits is the lifetime of the electron spin. We demonstrate the longest reported lifetimes (up to 30 s) of any electron spin qubit in a nanoelectronic device. By atomic-level engineering of the electron wave function within phosphorus atom quantum dots, we can minimize spin relaxation in agreement with recent theoretical predictions. These lifetimes allow us to demonstrate the sequential readout of two electron spin qubits with fidelit..
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Awarded by Army Research Office
Funding Acknowledgements
This research was conducted by the Australian Research Council Centre of Excellence for Quantum Computation and Communication Technology (project number CE110001027), the U.S. National Security Agency, and the U.S. Army Research Office (contract number W911NF-08-1-0527). B.W. acknowledges a Discovery Early Career Researcher Award Fellowship. M.Y.S. acknowledges an Australian Research Council Laureate Fellowship.