Robustness of non-Gaussian entanglement against noisy amplifier and attenuator environments
arXiv:1103.1311 · doi:10.1103/PhysRevLett.107.130501
Abstract
The recently developed Kraus representation for bosonic Gaussian channels is employed to study analytically the robustness of non-Gaussian entanglement against evolution under noisy attenuator and amplifier environments, and compare it with the robustness of Gaussian entanglement. Our results show that some non-Gaussian states with one ebit of entanglement are more robust than all Gaussian states, even the ones with arbitrarily large entanglement, a conclusion of direct consequence to the recent conjecture by Allegra et al. [PRL, 105, 100503 (2010)].
4 pages, 4 figures
References in corpus (10)
- The Quantum Internet
- Universal Quantum Computation with Continuous-Variable Cluster States
- Quantifying non-Gaussianity for quantum information
- Experimental entanglement distillation of mesoscopic quantum states
- One-mode Bosonic Gaussian channels: a full weak-degradability classification
- Non-Gaussianity of quantum states: an experimental test on single-photon added coherent states
- Teleportation of squeezing: Optimization using non-Gaussian resources
- Entanglement and nonclassicality for multi-mode radiation field states
- Linear amplification and quantum cloning for non-Gaussian continuous variables
- Simple proof of the robustness of Gaussian entanglement in bosonic noisy channels
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