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Passive demultiplexed two-photon state generation from a quantum dot

delete2025-08-11
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OA
AI
Y
Yusuf Karli *
I
Iker Avila Arenas
C
Christian Schimpf
A
Ailton J. Garcia
S
Santanu Manna
F
Florian Kappe
R
René Schwarz
G
Gabriel Undeutsch
M
Maximilian Aigner
M
Melina Peter
S
Saimon Filipe Covre da Silva
A
Armando Rastelli
G
Gregor Weihs
V
Vikas Remesh *
DOI:10.1038/s41534-025-01083-0delete
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Abstract

Abstract

En 中文
High-purity multi-photon states are essential for photonic quantum computing. Among existing platforms, semiconductor quantum dots offer a promising route to scalable and deterministic multi-photon state generation. However, to fully realize their potential, we require a suitable optical excitation method. Current approaches to multi-photon generation rely on active polarization-switching elements (e.g., electro-optic modulators, EOMs) to spatio-temporally demultiplex single photons. Yet, the achievable multi-photon rate is fundamentally limited by the switching speed of the EOM. Here, we introduce a fully passive demultiplexing technique that leverages a stimulated two-photon excitation process to achieve switching rates only limited by the quantum dot lifetime. We demonstrate this method by generating two-photon states from a single quantum dot without requiring active switching elements. Our approach significantly reduces the cost of demultiplexing while shifting it to the excitation stage, enabling loss-free demultiplexing and effectively doubling the achievable multi-photon generation rate when combined with existing active demultiplexing techniques.
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Journal

npj Quantum Information cover
npj Quantum Information
IF:
8.3
Papers:
1.4K
Citations:
8.1K

Organization

C
Cavendish Laboratory
Scholars:
173
Papers: 42
Citations: 0
I
institut für experimentalphysik
Scholars:
46
Papers: 16
Citations: 0
I
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