Strong coupling between two quantum dots and a photonic crystal cavity using magnetic field tuning

We demonstrate strong coupling between two indium arsenide (InAs) quantum dots (QDs) and a photonic crystal cavity by using a magnetic field as a frequency tuning method. The magnetic field causes a red shift of an exciton spin state in one QD and a blue shift in the opposite exciton spin state of t...

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Bibliographic Details
Published in:Optics express Vol. 19; no. 3; pp. 2589 - 2598
Main Authors: Kim, Hyochul, Sridharan, Deepak, Shen, Thomas C, Solomon, Glenn S, Waks, Edo
Format: Journal Article
Language:English
Published: United States 31-01-2011
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Summary:We demonstrate strong coupling between two indium arsenide (InAs) quantum dots (QDs) and a photonic crystal cavity by using a magnetic field as a frequency tuning method. The magnetic field causes a red shift of an exciton spin state in one QD and a blue shift in the opposite exciton spin state of the second QD, enabling them to be simultaneously tuned to the same cavity resonance. This method can match the emission frequency of two QDs separated by detunings as large as 1.35 meV using a magnetic field of up to 7 T. By controlling the detuning between the two QDs we measure the vacuum Rabi splitting (VRS) both when the QDs are individually coupled to the cavity, as well as when they are coupled to the cavity simultaneously. In the latter case the oscillator strength of two QDs shows a collective behavior, resulting in enhancement of the VRS as compared to the individual cases. Experimental results are compared to theoretical calculations based on the solution to the full master equation and found to be in excellent agreement.
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ISSN:1094-4087
1094-4087
DOI:10.1364/oe.19.002589