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Heisenberg scaling of imaging resolution by coherent enhancement

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arxiv 1606.02188 v2 pith:NWTEUZGJ submitted 2016-06-07 physics.atom-ph quant-ph

Heisenberg scaling of imaging resolution by coherent enhancement

classification physics.atom-ph quant-ph
keywords imagingheisenbergresolutionscalingquantumtargetcoherentdemonstrate
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

Classical imaging works by scattering photons from an object to be imaged, and achieves resolution scaling as $1/\sqrt{t}$, with $t$ the imaging time. By contrast, the laws of quantum mechanics allow one to utilize quantum coherence to obtain imaging resolution that can scale as quickly as $1/t$ -- the so-called "Heisenberg limit." However, ambiguities in the obtained signal often preclude taking full advantage of this quantum enhancement, while imaging techniques designed to be unambiguous often lose this optimal Heisenberg scaling. Here, we demonstrate an imaging technique which combines unambiguous detection of the target with Heisenberg scaling of the resolution. We also demonstrate a binary search algorithm which can efficiently locate a coherent target using the technique, resolving a target trapped ion to within 0.3% of the $1/e^2$ diameter of the excitation beam.

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