2018Frontiers in Optics / Laser ScienceRequires access

Increasing Sensitivity of an Atom Interferometer to the Heisenberg Limit using Enhanced Quantum Noise

Renpeng Fang, Resham Sarkar, Selim M. Shahriar

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Abstract

We show how, by using a Schroedinger Cat state, the sensitivity of an atomic interferometer can be increased, to the Heisenberg limit, while enhancing the quantum noise, thereby suppressing strongly the effect of excess noise.

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What this paper is about

We show how, by using a Schroedinger Cat state, the sensitivity of an atomic interferometer can be increased, to the Heisenberg limit, while enhancing the quantum noise, thereby suppressing strongly the effect of excess noise.

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Available abstract

We show how, by using a Schroedinger Cat state, the sensitivity of an atomic interferometer can be increased, to the Heisenberg limit, while enhancing the quantum noise, thereby suppressing strongly the effect of excess noise.

Key concepts: Heisenberg limit, Quantum limit, Interferometry, Physics, Noise (video), Quantum noise, Atom interferometer, Sensitivity (control systems)

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