Quantum-state storage and processing for polarization qubits in an inhomogeneously broadened Λ-type three-level medium

Abstract

We address the propagation of a single-photon pulse with two polarization components, i.e., a polarization qubit, in an inhomogeneously broadened "phaseonium" Λ-type three-level medium. We combine some of the nontrivial propagation effects characteristic for this kind of coherently prepared systems and the controlled reversible inhomogeneous broadening technique to propose several quantum information-processing applications, such as a protocol for polarization qubit filtering and sieving as well as a tunable polarization beam splitter. Moreover, we show that by imposing a spatial variation of the atomic coherence phase, an efficient quantum memory for the incident polarization qubit can be also implemented in Λ-type three-level systems.

Document Type

Article

Language

English

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Related items

Physical review. A ; Vol. 84, Issue 4 (October 2011), p. 042314-1-042314-8

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