2015Unpublished venueRequires access

Beating the Standard Quantum Limit in Quantum Metrology despite Noise

Jan Kołodyński

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Abstract

We review the quantum information theory program analysing the impact of noise in quantum metrology, which has led to the first uncorrelated-noise model allowing for limitless quantum enhancement of measurement precision, consequently yielding an improved atomic magnetometry experimental proposal.

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What this paper is about

We review the quantum information theory program analysing the impact of noise in quantum metrology, which has led to the first uncorrelated-noise model allowing for limitless quantum enhancement of measurement precision, consequently yielding an improved atomic magnetometry experimental proposal.

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Available abstract

We review the quantum information theory program analysing the impact of noise in quantum metrology, which has led to the first uncorrelated-noise model allowing for limitless quantum enhancement of measurement precision, consequently yielding an improved atomic magnetometry experimental proposal.

Key concepts: Quantum metrology, Quantum limit, Quantum sensor, Metrology, Quantum imaging, Quantum noise, Physics, Noise (video)

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