Creating heralded hyper-entangled photons using Rydberg atoms (vol 10, 100, 2021)

被引:0
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作者
Ghosh, Sutapa
Rivera, Nicholas
Eisenstein, Gadi
Kaminer, Ido
机构
[1] Andrew and Erna Viterby Department of Electrical Engineering and Russell Berrie Nanotechnology Institute, Technion-Israel Institute of Technology, Haifa
[2] Department of Physics, Massachusetts Institute of Technology, Cambridge, MA
关键词
D O I
10.1038/s41377-021-00569-8
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Entangled photon pairs are a fundamental component for testing the foundations of quantum mechanics, and for modern quantum technologies such as teleportation and secured communication. Current state-of-the-art sources are based on nonlinear processes that are limited in their efficiency and wavelength tunability. This motivates the exploration of physical mechanisms for entangled photon generation, with a special interest in mechanisms that can be heralded, preferably at telecommunications wavelengths. Here we present a mechanism for the generation of heralded entangled photons from Rydberg atom cavity quantum electrodynamics (cavity QED). We propose a scheme to demonstrate the mechanism and quantify its expected performance. The heralding of the process enables non-destructive detection of the photon pairs. The entangled photons are produced by exciting a rubidium atom to a Rydberg state, from where the atom decays via two-photon emission (TPE). A Rydberg blockade helps to excite a single Rydberg excitation while the input light field is more efficiently collectively absorbed by all the atoms. The TPE rate is significantly enhanced by a designed photonic cavity, whose many resonances also translate into high-dimensional entanglement. The resulting high-dimensionally entangled photons are entangled in more than one degree of freedom: in all of their spectral components, in addition to the polarization—forming a hyper-entangled state, which is particularly interesting in high information capacity quantum communication. We characterize the photon comb states by analyzing the Hong-Ou-Mandel interference and propose proof-of-concept experiments. © 2021, The Author(s).
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    Ghosh, Sutapa
    Rivera, Nicholas
    Eisenstein, Gadi
    Kaminer, Ido
    [J]. Ghosh, Sutapa (sutapa.g@campus.technion.ac.il); Kaminer, Ido (kaminer@technion.ac.il), 1600, Springer Nature (10):
  • [2] Creating heralded hyper-entangled photons using Rydberg atoms
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    Nicholas Rivera
    Gadi Eisenstein
    Ido Kaminer
    [J]. Light: Science & Applications, 10
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