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Different Types of Photon Entanglement from a Constantly Driven Quantum Emitter Inside a Cavity

Different Types of Photon Entanglement from a Constantly Driven Quantum Emitter Inside a Cavity Adv. Quantum Technol. 2021, 4, 2000108https://doi.org/10.1002/qute.202000108In the original article, a factor (c∼2−c2)$(\tilde{c}^2-c^2)$ is missing in the explicit expression for the quantity δUL$\delta ^\text{UL}$ shortly after Eqs. (23) and (A.10). In both occasions, the correct expression should read1δUL=c∼2−c22Δ0+4c∼2−c2ΔUL\begin{equation*} \delta ^\text{UL} = {\left(\tilde{c}^2-c^2\right)} {\left(\frac{2}{\Delta _0}+\frac{4 {\left(\tilde{c}^2-c^2\right)}}{\Delta _{\text{UL}}}\right)} \end{equation*}The authors state that this correction has no impact on any subsequent formula or conclusion presented in the original article and apologize for any confusion this may have caused. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Advanced Quantum Technologies Wiley

Different Types of Photon Entanglement from a Constantly Driven Quantum Emitter Inside a Cavity

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Publisher
Wiley
Copyright
© 2022 Wiley‐VCH GmbH
eISSN
2511-9044
DOI
10.1002/qute.202200058
Publisher site
See Article on Publisher Site

Abstract

Adv. Quantum Technol. 2021, 4, 2000108https://doi.org/10.1002/qute.202000108In the original article, a factor (c∼2−c2)$(\tilde{c}^2-c^2)$ is missing in the explicit expression for the quantity δUL$\delta ^\text{UL}$ shortly after Eqs. (23) and (A.10). In both occasions, the correct expression should read1δUL=c∼2−c22Δ0+4c∼2−c2ΔUL\begin{equation*} \delta ^\text{UL} = {\left(\tilde{c}^2-c^2\right)} {\left(\frac{2}{\Delta _0}+\frac{4 {\left(\tilde{c}^2-c^2\right)}}{\Delta _{\text{UL}}}\right)} \end{equation*}The authors state that this correction has no impact on any subsequent formula or conclusion presented in the original article and apologize for any confusion this may have caused.

Journal

Advanced Quantum TechnologiesWiley

Published: Sep 1, 2022

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