Monolayer-Based Single-Photon Source in a Liquid-Helium-Free Open Cavity Featuring 65% Brightness and Quantum Coherence
Article 2023 en
Authors
JD
Jens-Christian Drawer
VM
Victor N. Mitryakhin
HS
Hangyong Shan
Abstract
1 min read
Solid-state single-photon sources are central building blocks in quantum information processing. Atomically thin crystals have emerged as sources of nonclassical light; however, they perform below the state-of-the-art devices based on volume crystals. Here, we implement a bright single-photon source based on an atomically thin sheet of WSe<sub>2</sub> coupled to a tunable optical cavity in a liquid-helium-free cryostat without the further need for active stabilization. Its performance is characterized by high single-photon purity (g<sup>(2)</sup>(0) = 4.7 ± 0.7%) and record-high, first-lens brightness of linearly polarized photons of 65 ± 4%, representing a decisive step toward real-world quantum applications. The high performance of our devices allows us to observe two-photon interference in a Hong-Ou-Mandel experiment with 2% visibility limited by the emitter coherence time and setup resolution. Our results thus demonstrate that the combination of the unique properties of two-dimensional materials and versatile open cavities emerges as an inspiring avenue for novel quantum optoelectronic devices.
Jens-Christian Drawer, Salvatore Cianci, Vita Solovyeva, Alexander Steinhoff, Christopher Gies, Falk Eilenberger, Kenji Watanabe, Takashi Taniguchi, I. A. Solovev, Giorgio Pettinari, Federico Tuzi, Elena Blundo, Marco Felici, A. Polimeni, Martin Esmann, Christian Schneider
M. Iqbal Bakti Utama, Hongfei Zeng, Tumpa Sadhukhan, Anushka Dasgupta, S. Carin Gavin, Riddhi Ananth, Dmitry Lebedev, Wei Wang, Jia‐Shiang Chen, Kenji Watanabe, Takashi Taniguchi, Tobin J. Marks, Xuedan Ma, Emily A. Weiss, George C. Schatz, Nathaniel P. Stern, Mark C. Hersam
Lucas Liberal, Rafael Nadas, Gustavo H. R. Soares, Frederico B. Sousa, Maria Clara Godinho, G. M. Jacobsen, Takashi Taniguchi, Kenji Watanabe, M. D. Teodoro, Ado Jorio, Leonardo C. Campos
Discussion(0)
No comments yet. Be the first to comment.