Observation of high-order quantum resonances in the kicked rotor |
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Authors: | Kanem J F Maneshi S Partlow M Spanner M Steinberg A M |
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Affiliation: | Centre for Quantum Information & Quantum Control, University of Toronto, 60 St. George Street, Toronto, Ontario, Canada M5S 1A7. |
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Abstract: | ![]() Quantum resonances in the kicked rotor are characterized by a dramatically increased energy absorption rate, in stark contrast to the momentum localization generally observed. These resonances occur when the scaled Planck's constant Planck's [over ]=r/s 4pi, for any integers r and s. However, only the variant Planck's [over ]=r2pi resonances are easily observable. We have observed high-order quantum resonances (s>2) utilizing a sample of low energy, noncondensed atoms and a pulsed optical standing wave. Resonances are observed for variant Planck's [over ]=r/16 4pi for integers r=2-6. Quantum numerical simulations suggest that our observation of high-order resonances indicate a larger coherence length (i.e., coherence between different wells) than expected from an initially thermal atomic sample. |
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