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Chirality of nanophotonic waveguide with embedded quantum emitter for unidirectional spin transfer

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arxiv 1506.02266 v1 pith:YP23WMHQ submitted 2015-06-07 cond-mat.mes-hall physics.optics

Chirality of nanophotonic waveguide with embedded quantum emitter for unidirectional spin transfer

classification cond-mat.mes-hall physics.optics
keywords quantumwaveguidesemitterinformationchiralchiralityconversionembedded
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Scalable quantum technologies require faithful conversion between matter qubits storing the quantum information and photonic qubits carrying the information in integrated circuits and waveguides. We demonstrate that the electromagnetic field chirality which arises in nanophotonic waveguides leads to unidirectional emission from an embedded quantum dot quantum emitter, with resultant in-plane transfer of matter-qubit (spin) information. The chiral behavior occurs despite the non-chiral geometry and material of the waveguides. Using dot registration techniques we achieve a quantum emitter deterministically positioned at a chiral point and realize spin-path conversion by design. We measure and compare the phenomena in single mode nanobeam and photonic crystal waveguides. The former is much more tolerant to dot position, exhibits experimental spin-path readout as high as 95 +/- 5% and has potential to serve as the basis of future spin-logic and network implementations.

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