Photonic Quantum Networks formed from NV− centers

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作者
Kae Nemoto
Michael Trupke
Simon J. Devitt
Burkhard Scharfenberger
Kathrin Buczak
Jörg Schmiedmayer
William J. Munro
机构
[1] National Institute of Informatics,
[2] Vienna Center for Quantum Science and Technology,undefined
[3] Atominstitut,undefined
[4] TU Wien,undefined
[5] NTT Basic Research Laboratories,undefined
[6] NTT Corporation,undefined
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Scientific Reports | / 6卷
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摘要
In this article we present a simple repeater scheme based on the negatively-charged nitrogen vacancy centre in diamond. Each repeater node is built from modules comprising an optical cavity containing a single NV−, with one nuclear spin from 15N as quantum memory. The module uses only deterministic processes and interactions to achieve high fidelity operations (>99%) and modules are connected by optical fiber. In the repeater node architecture, the processes between modules by photons can be in principle deterministic, however current limitations on optical components lead the processes to be probabilistic but heralded. Our resource-modest repeater architecture contains two modules at each node and the repeater nodes are then connected by entangled photon pairs. We discuss the performance of such a quantum repeater network with modest resources and then incorporate more resource-intense strategies step by step. Our architecture should allow large-scale quantum information networks with existing or near future technology.
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  • [1] Dowling JP(2003)Quantum Technology: The Second Quantum Revolution Phil. Trans. R. Soc. A 361 3655-V10
  • [2] Milburn GJ(2006)Towards a Quantum Information Technology Industry J. Phys.: Condens. Matter 18 V1-53
  • [3] Spiller TP(2008)Towards fault-tolerant quantum computing with trapped ions Nat. Phys 4 463-208
  • [4] Munro WJ(2009)Fault-tolerant architectures for superconducting qubits Phys. Scr. T 137 014020-171
  • [5] Benhelm J(2009)Architectural design for a topological cluster state quantum computer New. J. Phys. 11 083032-80
  • [6] Kirchmair G(2010)Quantum computers Nature 464 45-1101
  • [7] Roos CF(2012)Scalable Architecture for a Room Temperature Solid-State QuantumÊInformation Processor Nat. Commun. 3 800-796
  • [8] Blatt R(2012)A Layered Architecture for Quantum Computing Using Quantum Dots Phys. Rev. X 2 031007-781
  • [9] DiVincenzo DP(2013)Requirements for fault-tolerant factoring on an atom-optics quantum computer Nat. Commun. 4 2524-418
  • [10] Devitt SJ(2014)Large Scale Modular Quantum Computer Architecture with Atomic Memory and Photonic Interconnects Phys. Rev. A 89 022317-200