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Characterization of Gaussian operations and distillation of Gaussian states

Geza Giedke, +1 more
- 23 Sep 2002 - 
- Vol. 66, Iss: 3, pp 032316
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TLDR
It is shown that Gaussian states cannot be distilled by local Gaussian operations and classical communication, and positive (but not completely positive) Gaussian maps are defined.
Abstract
We characterize the class of all physical operations that transform Gaussian states to Gaussian states. We show that this class coincides with that of all operations that can be performed on Gaussian states using linear optical elements and homodyne measurements. For bipartite systems we characterize the processes that can be implemented by local operations and classical communication, as well as those that can be implemented using positive partial transpose preserving maps. As an application, we show that Gaussian states cannot be distilled by local Gaussian operations and classical communication. We also define and characterize positive (but not completely positive) Gaussian maps.

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Citations
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Journal ArticleDOI

Manipulating thermal light states by the controlled addition and subtraction of single photons

TL;DR: In this paper, the authors report the generation and the tomographic analysis of novel quantum states of light generated by the controlled addition and subtraction of single photons to and from a classical and fully incoherent thermal light field.
Journal ArticleDOI

Generation of picosecond pulsed coherent state superpositions

TL;DR: In this paper, the Schrodinger cat states were generated by subtracting single photons from picosecond pulsed squeezed states of light using spontaneous parametric downconversion (SPDC).
Journal ArticleDOI

Quantum memory and teleportation using macroscopic gas samples

TL;DR: In this article, the authors describe the experimental demonstration of three crucial components in such a network using the off-resonant Faraday interaction between macroscopic atomic ensembles and coherent light.
Journal ArticleDOI

Quantum thermodynamics in a multipartite setting: A resource theory of local Gaussian work extraction for multimode bosonic systems

TL;DR: In this article, a resource theory of local activity for a multimode bosonic system is proposed, defined as the difference between the trace and symplectic trace of the covariance matrix of the system.
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Converse bounds for quantum and private communication over Holevo-Werner channels

TL;DR: The teleportation covariance of Holevo-Werner channels is used to upper bound their two-way assisted quantum and secret-key capacities, and it is shown that the relative entropy bounds are strictly sub-additive for a sub-class of the Holevo theorems, so that their regularisation provides a tighter performance.
References
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Book

Matrix Analysis

TL;DR: In this article, the authors present results of both classic and recent matrix analyses using canonical forms as a unifying theme, and demonstrate their importance in a variety of applications, such as linear algebra and matrix theory.

Measuring the Quantum State of Light

Ulf Leonhardt
TL;DR: In this paper, the authors present a method for simultaneous measurement of position and momentum in a simple optical instrument with respect to the quantum theory of light and quasiprobability distribution.
Book

Measuring the Quantum State of Light

Ulf Leonhardt
TL;DR: In this paper, the authors present a method for simultaneous measurement of position and momentum in a simple optical instrument with respect to the quantum theory of light and quasiprobability distribution.
Journal ArticleDOI

Generalized Coherent States

David Stoler
- 15 Oct 1971 - 
TL;DR: In this paper, the generalized coherent states were studied using an operator technique similar to one we have used in a previous paper, and an alternative derivation of the most general coherent state was provided.
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