Paraphernalia
PPubMed17 May 2021Cited 3×

Procedure via cross-Kerr nonlinearities for encoding single logical qubit information onto four-photon decoherence-free states

Jino Heo, Seong-Gon Choi

Abstract

We propose a photonic procedure using cross-Kerr nonlinearities (XKNLs) to encode single logical qubit information onto four-photon decoherence-free states. In quantum information processing, a decoherence-free subspace can secure quantum information against collective decoherence. Therefore, we design a procedure employing nonlinear optical gates, which are composed of XKNLs, quantum bus beams, and photon-number-resolving measurements with linear optical devices, to conserve quantum information by encoding quantum information onto four-photon decoherence-free states (single logical qubit information). Based on our analysis in quantifying the affection (photon loss and dephasing) of the decoherence effect, we demonstrate the experimental condition to acquire the reliable procedure of single logical qubit information having the robustness against the decoherence effect.

A figure from Procedure via cross-Kerr nonlinearities for encoding single logical qubit information onto four-photon decoherence-free states
fig. from the paper

§ The Valyu brief

Reading the full paper and taking notes. This takes a few seconds…

§ Ask this paper

Ask a question about this paper

Valyu reads the full text and answers from what the paper actually says.

Q.

Searching the other archives…

Procedure via cross-Kerr nonlinearities for encoding single logical qubit information onto four-photon decoherence-free states · Paraphernalia