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Beyond the Four-Level Model: Dark and Hot States in Quantum Dots Degrade Photonic Entanglement

delete2023-02-06
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OA
AI
B
Barbara Lehner *
T
Tim Seidelmann
G
Gabriel Undeutsch
C
Christian Schimpf
S
Santanu Manna
M
Michał Gawełczyk
S
Saimon Filipe Covre da Silva
袁学勇 cover
袁学勇 (Xueyong Yuan)
S
Sandra Stroj
D
Doris E. Reiter
V
V. M. Axt
A
Armando Rastelli *
DOI:10.1021/acs.nanolett.2c04734delete
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Abstract

Abstract

En 中文
Entangled photon pairs are essential for a multitude of quantum photonic applications. To date, the best performing solid-state quantum emitters of entangled photons are semiconductor quantum dots operated around liquidhelium temperatures. To favor the widespread deployment of these sources, it is important to explore and understand their behavior at temperatures accessible with compact Stirling coolers. Here we study the polarization entanglement among photon pairs from the biexciton-exciton cascade in GaAs quantum dots at temperatures up to -,65 K. We observe entanglement degradation accompanied by changes in decay dynamics, which we ascribe to thermal population and depopulation of hot and dark states in addition to the four levels relevant for photon pair generation. Detailed calculations considering the presence and characteristics of the additional states and phononassisted transitions support the interpretation. We expect these results to guide the optimization of quantum dots as sources of highly entangled photons at elevated temperatures.
Keywords:
Quantum Optics
Quantum Dots
Temperature Dependency
Excited States
Hot States
Entanglement
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Journal

Nano Letters cover
Nano Letters
IF:
9.1
Papers:
2.7W
Citations:
16.5W

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J
Johannes Kepler University Linz
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dortmund university of technology
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southeast university - china
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wroclaw university of science & technology
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