Entanglement of single-photons and chiral phonons in atomically thin WSe2

被引:0
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作者
Xiaotong Chen
Xin Lu
Sudipta Dubey
Qiang Yao
Sheng Liu
Xingzhi Wang
Qihua Xiong
Lifa Zhang
Ajit Srivastava
机构
[1] Emory University,Department of Physics
[2] Nanyang Technological University,Division of Physics and Applied Physics, School of Physical and Mathematical Sciences
[3] Nanyang Technological University,NOVITAS, Nanoelectronics Centre of Excellence, School of Electrical and Electronic Engineering
[4] Nanjing Normal University,Center for Quantum Transport and Thermal Energy Science, School of Physics and Technology
来源
Nature Physics | 2019年 / 15卷
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摘要
Quantum entanglement is a fundamental phenomenon that, on the one hand, reveals deep connections between quantum mechanics, gravity and spacetime1,2, and on the other hand, has practical applications as a key resource in quantum information processing3. Although it is routinely achieved in photon–atom ensembles4, entanglement involving solid-state5–7 or macroscopic objects8 remains challenging albeit promising for both fundamental physics and technological applications. Here, we report entanglement between collective, chiral vibrations in a two-dimensional WSe2 host—chiral phonons (CPs)—and single-photons emitted from quantum dots9–13 (QDs) present in it. CPs that carry angular momentum were recently observed in WSe2 and are a distinguishing feature of the underlying honeycomb lattice14,15. The entanglement results from a ‘which-way’ scattering process, involving an optical excitation in a QD and doubly-degenerate CPs, which takes place via two indistinguishable paths. Our unveiling of entanglement involving a macroscopic, collective excitation together with strong interactions between CPs and QDs in two-dimensional materials opens up ways for phonon-driven entanglement of QDs and engineering chiral or non-reciprocal interactions at the single-photon level.
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页码:221 / 227
页数:6
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