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Spin-resolved purcell effect in a quantum dot microcavity system

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Authors

Ren, Q J
Lu, Jian
Wu, Shan
Sun, Liaoxin
Zhang, Weihang
Xie, Wei
Sun, Zheng
Zhu, Yonguyan
Jagadish, Chennupati
Shen, S C

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American Chemical Society

Abstract

We demonstrate the spin selective coupling of the exciton state with cavity mode in a single quantum dot (QD)-micropillar cavity system. By tuning an external magnetic field, each spin polarized exciton state can be selectively coupled with the cavity mode due to the Zeeman effect. A significant enhancement of spontaneous emission rate of each spin state is achieved, giving rise to a tunable circular polarization degree from -90% to 93%. A four-level rate equation model is developed, and it agrees well with our experimental data. In addition, the coupling between photon mode and each exciton spin state is also achieved by varying temperature, demonstrating the full manipulation over the spin states in the QD-cavity system. Our results pave the way for the realization of future quantum light sources and the quantum information processing applications.

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Source

Nano Letters

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Restricted until

2037-12-31
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