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Electric-field-induced coherent coupling of the exciton states in a single quantum dot

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arxiv 1203.5909 v1 pith:CJX6MB23 submitted 2012-03-27 cond-mat.mes-hall cond-mat.otherquant-ph

Electric-field-induced coherent coupling of the exciton states in a single quantum dot

classification cond-mat.mes-hall cond-mat.otherquant-ph
keywords quantumstatescoherentcouplingsplittingcontroleigenstatesexciton
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The signature of coherent coupling between two quantum states is an anticrossing in their energies as one is swept through the other. In single semiconductor quantum dots containing an electron-hole pair the eigenstates form a two-level system that can be used to demonstrate quantum effects in the solid state, but in all previous work these states were independent. Here we describe a technique to control the energetic splitting of these states using a vertical electric field, facilitating the observation of coherent coupling between them. Near the minimum splitting the eigenstates rotate in the plane of the sample, being orientated at 45{\deg} when the splitting is smallest. Using this system we show direct control over the exciton states in one quantum dot, leading to the generation of entangled photon pairs.

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