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A highly efficient single photon-single quantum dot interface

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arxiv 1502.01062 v1 pith:33XTZQWG submitted 2015-02-03 quant-ph cond-mat.mes-hall

A highly efficient single photon-single quantum dot interface

classification quant-ph cond-mat.mes-hall
keywords quantuminterfacebuildsingleefficientphotonphotonswell
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Semiconductor quantum dots are a promising system to build a solid state quantum network. A critical step in this area is to build an efficient interface between a stationary quantum bit and a flying one. In this chapter, we show how cavity quantum electrodynamics allows us to efficiently interface a single quantum dot with a propagating electromagnetic field. Beyond the well known Purcell factor, we discuss the various parameters that need to be optimized to build such an interface. We then review our recent progresses in terms of fabrication of bright sources of indistinguishable single photons, where a record brightness of 79% is obtained as well as a high degree of indistinguishability of the emitted photons. Symmetrically, optical nonlinearities at the very few photon level are demonstrated, by sending few photon pulses at a quantum dot-cavity device operating in the strong coupling regime. Perspectives and future challenges are briefly discussed.

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