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      Perspectives on quantum transduction

      , , , , , ,
      Quantum Science and Technology
      IOP Publishing

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          Abstract

          Quantum transduction, the process of converting quantum signals from one form of energy to another, is an important area of quantum science and technology. The present perspective article reviews quantum transduction between microwave and optical photons, an area that has recently seen a lot of activity and progress because of its relevance for connecting superconducting quantum processors over long distances, among other applications. Our review covers the leading approaches to achieving such transduction, with an emphasis on those based on atomic ensembles, opto-electro-mechanics, and electro-optics. We briefly discuss relevant metrics from the point of view of different applications, as well as challenges for the future.

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          Superconducting circuits for quantum information: an outlook.

          The performance of superconducting qubits has improved by several orders of magnitude in the past decade. These circuits benefit from the robustness of superconductivity and the Josephson effect, and at present they have not encountered any hard physical limits. However, building an error-corrected information processor with many such qubits will require solving specific architecture problems that constitute a new field of research. For the first time, physicists will have to master quantum error correction to design and operate complex active systems that are dissipative in nature, yet remain coherent indefinitely. We offer a view on some directions for the field and speculate on its future.
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            • Record: found
            • Abstract: not found
            • Article: not found

            Cavity optomechanics

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              • Record: found
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              • Article: not found

              The quantum internet.

              H. Kimble (2008)
              Quantum networks provide opportunities and challenges across a range of intellectual and technical frontiers, including quantum computation, communication and metrology. The realization of quantum networks composed of many nodes and channels requires new scientific capabilities for generating and characterizing quantum coherence and entanglement. Fundamental to this endeavour are quantum interconnects, which convert quantum states from one physical system to those of another in a reversible manner. Such quantum connectivity in networks can be achieved by the optical interactions of single photons and atoms, allowing the distribution of entanglement across the network and the teleportation of quantum states between nodes.
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                Author and article information

                Contributors
                (View ORCID Profile)
                (View ORCID Profile)
                Journal
                Quantum Science and Technology
                Quantum Sci. Technol.
                IOP Publishing
                2058-9565
                March 17 2020
                March 01 2020
                March 17 2020
                March 01 2020
                : 5
                : 2
                : 020501
                Article
                10.1088/2058-9565/ab788a
                7ae374aa-11b5-4e17-b9fb-2c0278366b2f
                © 2020

                http://creativecommons.org/licenses/by/4.0/

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