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Decision making based on optical excitation transfer via near-field interactions between quantum dots

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arxiv 1412.5861 v1 pith:J4NDSFAW submitted 2014-12-18 physics.optics cond-mat.mes-hall

Decision making based on optical excitation transfer via near-field interactions between quantum dots

classification physics.optics cond-mat.mes-hall
keywords opticaldecisionexcitationmakingtransferdotsinteractionsnear-field
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Optical near-field interactions between nanostructured matter, such as quantum dots, result in unidirectional optical excitation transfer when energy dissipation is induced. This results in versatile spatiotemporal dynamics of the optical excitation, which can be controlled by engineering the dissipation processes and exploited to realize intelligent capabilities such as solution searching and decision making. Here we experimentally demonstrate the ability to solve a decision making problem on the basis of optical excitation transfer via near-field interactions by using colloidal quantum dots of different sizes, formed on a geometry-controlled substrate. We characterize the energy transfer behavior due to multiple control light patterns and experimentally demonstrate the ability to solve the multi-armed bandit problem. Our work makes a decisive step towards the practical design of nanophotonic systems capable of efficient decision making, one of the most important intellectual attributes of the human brain.

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