Path-dependent initialization of a single quantum dot exciton spin in a nanophotonic waveguide

R. J. Coles, D. M. Price, B. Royall, Edmund Clarke, M. S. Skolnick, A. M. Fox, M. N. Makhonin

Physical review. B./Physical review. B · 2017 · 28 citations · 30 references

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Abstract

We demonstrate a scheme for in-plane initialization of a single exciton spin in an InGaAs quantum dot (QD) coupled to a GaAs nanobeam waveguide. The chiral coupling of the QD and the optical mode of the nanobeam enables spin initialization fidelity approaching unity in magnetic field $B=1$ T and $>0.9$ without the field. We further show that this in-plane excitation scheme is independent of the incident excitation laser polarization and depends solely on the excitation direction. This scheme provides a robust in-plane spin excitation basis for a photon-mediated spin network for quantum information applications.

References

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