Implementation of a quantum cubic gate by adaptive non-Gaussian measurement
arXiv:1507.08782 · doi:10.1103/PhysRevA.93.022301
Abstract
We present a concept of non-Gaussian measurement composed of a non-Gaussian ancillary state, linear optics and adaptive heterodyne measurement, and on the basis of this we also propose a simple scheme of implementing a quantum cubic gate on a traveling light beam. In analysis of the cubic gate in the Heisenberg representation, we find that nonlinearity of the gate is independent from nonclassicality; the nonlinearity is generated solely by a classical nonlinear adaptive control in a measurement-and-feedforward process while the nonclassicality is attached by the non-Gaussian ancilla that suppresses excess noise in the output. By exploiting the noise term as a figure of merit, we consider the optimum non-Gaussian ancilla that can be prepared within reach of current technologies and discuss performance of the gate. It is a crucial step towards experimental implementation of the quantum cubic gate.
9 pages, 6 figures
References in corpus (11)
- Advances in Quantum Teleportation
- Universal Quantum Computation with Continuous-Variable Cluster States
- Experimental Realization of Universal Geometric Quantum Gates with Solid-State Spins
- Optically Levitating Dielectrics in the Quantum Regime: Theory and Protocols
- Generating superposition of up-to three photons for continuous variable quantum information processing
- Demonstration of a quantum nondemolition sum gate
- Demonstration of deterministic and high fidelity squeezing of quantum information
- Non-Gaussian states for continuous variable quantum computation via Gaussian maps
- Repeat-until-success cubic phase gate for universal continuous-variable quantum computation
- Experimental realization of a dynamic squeezing gate
- Demonstration of reversible phase-insensitive optical amplifier
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