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  Nonadiabatic Molecular Association in Thermal Gases Driven by Radio-Frequency Pulses

Giannakeas, P., Khaykovich, L., Rost, J. M., & Greene, C. H. (2019). Nonadiabatic Molecular Association in Thermal Gases Driven by Radio-Frequency Pulses. Physical Review Letters, 123(4): 043204. doi:10.1103/PhysRevLett.123.043204.

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1903.01389.pdf (Preprint), 3MB
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Giannakeas, Panagiotis1, Author           
Khaykovich, L.2, Author
Rost, Jan M.1, Author           
Greene, Chris H.2, Author
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1Max Planck Institute for the Physics of Complex Systems, Max Planck Society, ou_2117288              
2external, ou_persistent22              

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 MPIPKS: Ultracold matter
 Abstract: The molecular association process in a thermal gas of Rb-85 is investigated where the effects of the envelope of the radio-frequency field are taken into account. For experimentally relevant parameters our analysis shows that with increasing pulse length the corresponding molecular conversion efficiency exhibits low-frequency interference fringes which are robust under thermal averaging over a wide range of temperatures. This dynamical interference phenomenon is attributed to Stuckelberg phase accumulation between the low-energy continuum states and the dressed molecular state which exhibits a shift proportional to the envelope of the radio-frequency pulse intensity.

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 Dates: 2019-07-242019-07-26
 Publication Status: Issued
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Title: Physical Review Letters
  Abbreviation : Phys. Rev. Lett.
Source Genre: Journal
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Publ. Info: Woodbury, N.Y. : American Physical Society
Pages: - Volume / Issue: 123 (4) Sequence Number: 043204 Start / End Page: - Identifier: ISSN: 0031-9007
CoNE: https://pure.mpg.de/cone/journals/resource/954925433406_1