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arxiv: 1106.3237 · v4 · submitted 2011-06-16 · 🪐 quant-ph · cond-mat.supr-con

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Generating entanglement between microwave photons and qubits in multiple cavities coupled by a superconducting qutrit

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classification 🪐 quant-ph cond-mat.supr-con
keywords textrmfourresonatorscavitiescoupledquantumqubitsstate
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We discuss how to generate entangled coherent states of four \textrm{microwave} resonators \textrm{(a.k.a. cavities)} coupled by a superconducting qubit. We also show \textrm{that} a GHZ state of four superconducting qubits embedded in four different resonators \textrm{can be created with this scheme}. In principle, \textrm{the proposed method} can be extended to create an entangled coherent state of $n$ resonators and to prepare a Greenberger-Horne-Zeilinger (GHZ) state of $n$ qubits distributed over $n$ cavities in a quantum network. In addition, it is noted that four resonators coupled by a coupler qubit may be used as a basic circuit block to build a two-dimensional quantum network, which is useful for scalable quantum information processing.

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