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arxiv: 1112.1690 · v2 · submitted 2011-12-07 · 🪐 quant-ph

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Driven-dissipative preparation of entangled states in cascaded quantum-optical networks

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classification 🪐 quant-ph
keywords cascadedentanglednetworksstatesdarkdrivennetworkpreparation
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We study the dissipative dynamics and the formation of entangled states in driven cascaded quantum networks, where multiple systems are coupled to a common unidirectional bath. Specifically, we identify the conditions under which emission and coherent reabsorption of radiation drives the whole network into a pure stationary state with non-trivial quantum correlations between the individual nodes. We illustrate this effect in more detail for the example of cascaded two-level systems, where we present an explicit preparation scheme that allows one to tune the whole network through "bright" and "dark" states associated with different multi-partite entanglement patterns. In a complementary setting consisting of cascaded non-linear cavities, we find that two cavity modes can be driven into a non-Gaussian entangled dark state. Potential realizations of such cascaded networks with optical and microwave photons are discussed.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Entanglement of two optical emitters mediated by a terahertz channel

    quant-ph 2026-04 unverdicted novelty 5.0

    Steady-state entanglement with concurrence above 0.9 is generated between optical emitters by optically tuning Rabi-split dressed states to couple via a THz channel and collective dissipation.