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  • In this Brief Report we provide the physical interpretation of the success probability of an optimal tunable linear-optical controlled-PHASE gate as a function of the phase shift imposed by the gate. We analyze in detail the theoretical prediction of this success probability as identified by Kieling et al. [New J. Phys. 12, 013003 (2010)] and provide discussion revealing the reasons for its nonmonotonous behavior. Moreover, we show that the success probability can be increased if several requirements imposed on the gate can be lifted.
  • In this Brief Report we provide the physical interpretation of the success probability of an optimal tunable linear-optical controlled-PHASE gate as a function of the phase shift imposed by the gate. We analyze in detail the theoretical prediction of this success probability as identified by Kieling et al. [New J. Phys. 12, 013003 (2010)] and provide discussion revealing the reasons for its nonmonotonous behavior. Moreover, we show that the success probability can be increased if several requirements imposed on the gate can be lifted. (en)
Title
  • Optimal success probability of a tunable linear-optical controlled-PHASE gate
  • Optimal success probability of a tunable linear-optical controlled-PHASE gate (en)
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  • Optimal success probability of a tunable linear-optical controlled-PHASE gate
  • Optimal success probability of a tunable linear-optical controlled-PHASE gate (en)
skos:notation
  • RIV/61989592:15310/12:33141398!RIV13-MSM-15310___
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  • P(ED2.1.00/03.0058), P(EE2.3.20.0017), P(EE2.3.20.0058)
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  • 3
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  • 156809
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  • RIV/61989592:15310/12:33141398
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  • quantum information, qubit, Mach-Zehnder interferometer (en)
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  • US - Spojené státy americké
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  • [9B0FD14574FC]
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  • Physical Review A
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  • 86
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  • Lemr, Karel
  • Černoch, Antonín
http://linked.open...ain/vavai/riv/wos
  • 000308343500004
issn
  • 1050-2947
number of pages
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  • 10.1103/PhysRevA.86.034304
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  • 15310
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