Matches in SemOpenAlex for { <https://semopenalex.org/work/W2145968708> ?p ?o ?g. }
- W2145968708 abstract "We model the formation of stable heteronuclear molecules via pulsed Raman photoassociation of a two-component Bose-Einstein condensate near a strong Feshbach resonance, for both counterintuitive and intuitive pulse sequencing. Compared to lasers alone, weak Raman photoassociation is enhanced by as much as a factor of ten (five) for a counterintuitive (intuitive) pulse sequence, whereas strong Raman photoassociation is barely enhanced at all---regardless of pulse sequence. Stronger intra-atom, molecule, or atom-molecule collisions lead to an expected decrease in conversion efficiency, but stronger ambient inter-atom collisions lead to an unexpected increase in the efficiency of stable molecule production. Numerical results agree reasonably with an analytical approximation." @default.
- W2145968708 created "2016-06-24" @default.
- W2145968708 creator A5014576899 @default.
- W2145968708 creator A5021516609 @default.
- W2145968708 creator A5026385960 @default.
- W2145968708 creator A5071817202 @default.
- W2145968708 creator A5087998087 @default.
- W2145968708 date "2011-10-10" @default.
- W2145968708 modified "2023-09-25" @default.
- W2145968708 title "Feshbach-resonant Raman photoassociation in a Bose-Einstein condensate" @default.
- W2145968708 cites W1621707536 @default.
- W2145968708 cites W1903973897 @default.
- W2145968708 cites W1965142895 @default.
- W2145968708 cites W1965649323 @default.
- W2145968708 cites W1966537553 @default.
- W2145968708 cites W1967335216 @default.
- W2145968708 cites W1969172642 @default.
- W2145968708 cites W1973406635 @default.
- W2145968708 cites W1974594930 @default.
- W2145968708 cites W1975514027 @default.
- W2145968708 cites W1976293731 @default.
- W2145968708 cites W1976664564 @default.
- W2145968708 cites W1981149982 @default.
- W2145968708 cites W1985969296 @default.
- W2145968708 cites W1987549347 @default.
- W2145968708 cites W1987758799 @default.
- W2145968708 cites W1988241451 @default.
- W2145968708 cites W1989700841 @default.
- W2145968708 cites W1989773376 @default.
- W2145968708 cites W1990944434 @default.
- W2145968708 cites W1990963306 @default.
- W2145968708 cites W1991602497 @default.
- W2145968708 cites W1996918874 @default.
- W2145968708 cites W1997493739 @default.
- W2145968708 cites W2000001302 @default.
- W2145968708 cites W2002929378 @default.
- W2145968708 cites W2003824793 @default.
- W2145968708 cites W2007347120 @default.
- W2145968708 cites W2008020343 @default.
- W2145968708 cites W2011549076 @default.
- W2145968708 cites W2013888996 @default.
- W2145968708 cites W2015238278 @default.
- W2145968708 cites W2015428108 @default.
- W2145968708 cites W2015794680 @default.
- W2145968708 cites W2018851260 @default.
- W2145968708 cites W2022314210 @default.
- W2145968708 cites W2022316177 @default.
- W2145968708 cites W2022636282 @default.
- W2145968708 cites W2032065990 @default.
- W2145968708 cites W2034116931 @default.
- W2145968708 cites W2035413341 @default.
- W2145968708 cites W203559588 @default.
- W2145968708 cites W2039570796 @default.
- W2145968708 cites W2042853760 @default.
- W2145968708 cites W2043234390 @default.
- W2145968708 cites W2045110365 @default.
- W2145968708 cites W2048772041 @default.
- W2145968708 cites W2049384003 @default.
- W2145968708 cites W2051714258 @default.
- W2145968708 cites W2054096257 @default.
- W2145968708 cites W2055288951 @default.
- W2145968708 cites W2055794162 @default.
- W2145968708 cites W2057161736 @default.
- W2145968708 cites W2058363088 @default.
- W2145968708 cites W2060430360 @default.
- W2145968708 cites W2061612009 @default.
- W2145968708 cites W2068918996 @default.
- W2145968708 cites W2075137383 @default.
- W2145968708 cites W2084462991 @default.
- W2145968708 cites W2085336923 @default.
- W2145968708 cites W2086247580 @default.
- W2145968708 cites W2092159648 @default.
- W2145968708 cites W2094321027 @default.
- W2145968708 cites W2101248130 @default.
- W2145968708 cites W2115831218 @default.
- W2145968708 cites W2119459669 @default.
- W2145968708 cites W2125362505 @default.
- W2145968708 cites W2132639490 @default.
- W2145968708 cites W2134140324 @default.
- W2145968708 cites W2138217149 @default.
- W2145968708 cites W2138541148 @default.
- W2145968708 cites W2144966147 @default.
- W2145968708 cites W2154203367 @default.
- W2145968708 cites W2154830023 @default.
- W2145968708 cites W2166587435 @default.
- W2145968708 cites W2463645353 @default.
- W2145968708 cites W2963526717 @default.
- W2145968708 cites W3105687464 @default.
- W2145968708 cites W3105770602 @default.
- W2145968708 cites W3153914512 @default.
- W2145968708 doi "https://doi.org/10.1103/physreva.84.043614" @default.
- W2145968708 hasPublicationYear "2011" @default.
- W2145968708 type Work @default.
- W2145968708 sameAs 2145968708 @default.
- W2145968708 citedByCount "6" @default.
- W2145968708 countsByYear W21459687082012 @default.
- W2145968708 countsByYear W21459687082014 @default.
- W2145968708 countsByYear W21459687082015 @default.
- W2145968708 crossrefType "journal-article" @default.
- W2145968708 hasAuthorship W2145968708A5014576899 @default.