Source of Indistinguishable Single Photons Based on Epitaxial InAs/GaAs Quantum Dots for Integration in Quantum Computing Schemes

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作者
A. I. Galimov
M. V. Rakhlin
G. V. Klimko
Yu. M. Zadiranov
Yu. A. Guseva
S. I. Troshkov
T. V. Shubina
A. A. Toropov
机构
[1] Ioffe Institute,
[2] Russian Academy of Sciences,undefined
来源
JETP Letters | 2021年 / 113卷
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摘要
The characteristics of single photons emitted by columnar microstructures based on epitaxial microcavity heterostructures with distributed Bragg reflectors, which include self-organized InAs/GaAs quantum dots and have a comparatively low Q factor in the range of 2000–3000, have been studied. It has been shown that a state with a given spin configuration—exciton with a certain polarization or trion—can be initialized in a single quantum dot under the coherent resonant linearly polarized optical pumping by a π pulse. The measurement of two-photon interference by the Hong–Ou–Mandel scheme has demonstrated that the degree of indistinguishability of successively emitted single photons is 97 and 93% at a time delay of 2 and 250 ns, respectively. Prospects of application of such sources in optical quantum computing schemes have been discussed.
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页码:252 / 258
页数:6
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