Matches in SemOpenAlex for { <https://semopenalex.org/work/W2963761908> ?p ?o ?g. }
- W2963761908 abstract "We discuss the filtering of the vibrational states of a cold atom in an optical trap by chaining this trap with two empty ones and adiabatically controlling the tunneling. Matter-wave filtering is performed by selectively transferring the population of the highest populated vibrational state to the most distant trap while the population of the rest of the states remains in the initial trap. Analytical conditions for two-state filtering are derived and then applied to an arbitrary number of populated bound states. Realistic numerical simulations close to state-of-the-art experimental arrangements are performed by modeling the triple well with time-dependent Poschl-Teller potentials. In addition to filtering of vibrational states, we discuss applications for quantum tomography of the initial population distribution and engineering of atomic Fock states that, eventually, could be used for tunneling-assisted evaporative cooling." @default.
- W2963761908 created "2019-07-30" @default.
- W2963761908 creator A5001230797 @default.
- W2963761908 creator A5012910291 @default.
- W2963761908 creator A5016353688 @default.
- W2963761908 creator A5022677883 @default.
- W2963761908 creator A5076776568 @default.
- W2963761908 date "2011-03-30" @default.
- W2963761908 modified "2023-10-02" @default.
- W2963761908 title "Filtering of matter-wave vibrational states via spatial adiabatic passage" @default.
- W2963761908 cites W1484122947 @default.
- W2963761908 cites W1489071059 @default.
- W2963761908 cites W1934129469 @default.
- W2963761908 cites W1969035154 @default.
- W2963761908 cites W1982053517 @default.
- W2963761908 cites W1982233088 @default.
- W2963761908 cites W1987968669 @default.
- W2963761908 cites W1988574822 @default.
- W2963761908 cites W1989184501 @default.
- W2963761908 cites W1997790899 @default.
- W2963761908 cites W2001154022 @default.
- W2963761908 cites W2014586701 @default.
- W2963761908 cites W2015002660 @default.
- W2963761908 cites W2016608283 @default.
- W2963761908 cites W2018098207 @default.
- W2963761908 cites W2022959953 @default.
- W2963761908 cites W2023124822 @default.
- W2963761908 cites W2026920019 @default.
- W2963761908 cites W2028190807 @default.
- W2963761908 cites W2035196826 @default.
- W2963761908 cites W2036988813 @default.
- W2963761908 cites W2040073928 @default.
- W2963761908 cites W2048857046 @default.
- W2963761908 cites W2050330900 @default.
- W2963761908 cites W2051613858 @default.
- W2963761908 cites W2051913533 @default.
- W2963761908 cites W2056798345 @default.
- W2963761908 cites W2057628186 @default.
- W2963761908 cites W2062985426 @default.
- W2963761908 cites W2068570827 @default.
- W2963761908 cites W2075017867 @default.
- W2963761908 cites W2075229318 @default.
- W2963761908 cites W2082520075 @default.
- W2963761908 cites W2084336605 @default.
- W2963761908 cites W2088479026 @default.
- W2963761908 cites W2092885978 @default.
- W2963761908 cites W2093426964 @default.
- W2963761908 cites W2094243705 @default.
- W2963761908 cites W2116999682 @default.
- W2963761908 cites W2125993136 @default.
- W2963761908 cites W2128260399 @default.
- W2963761908 cites W2129828999 @default.
- W2963761908 cites W2132639490 @default.
- W2963761908 cites W2134477962 @default.
- W2963761908 cites W2158605123 @default.
- W2963761908 cites W2171044963 @default.
- W2963761908 cites W2200604288 @default.
- W2963761908 cites W2764277023 @default.
- W2963761908 cites W2963310849 @default.
- W2963761908 cites W3102264387 @default.
- W2963761908 cites W3103870886 @default.
- W2963761908 doi "https://doi.org/10.1103/physreva.83.033629" @default.
- W2963761908 hasPublicationYear "2011" @default.
- W2963761908 type Work @default.
- W2963761908 sameAs 2963761908 @default.
- W2963761908 citedByCount "12" @default.
- W2963761908 countsByYear W29637619082012 @default.
- W2963761908 countsByYear W29637619082013 @default.
- W2963761908 countsByYear W29637619082014 @default.
- W2963761908 countsByYear W29637619082016 @default.
- W2963761908 crossrefType "journal-article" @default.
- W2963761908 hasAuthorship W2963761908A5001230797 @default.
- W2963761908 hasAuthorship W2963761908A5012910291 @default.
- W2963761908 hasAuthorship W2963761908A5016353688 @default.
- W2963761908 hasAuthorship W2963761908A5022677883 @default.
- W2963761908 hasAuthorship W2963761908A5076776568 @default.
- W2963761908 hasBestOaLocation W29637619082 @default.
- W2963761908 hasConcept C101496351 @default.
- W2963761908 hasConcept C109663097 @default.
- W2963761908 hasConcept C11413529 @default.
- W2963761908 hasConcept C114852677 @default.
- W2963761908 hasConcept C120398109 @default.
- W2963761908 hasConcept C121099081 @default.
- W2963761908 hasConcept C121332964 @default.
- W2963761908 hasConcept C144024400 @default.
- W2963761908 hasConcept C149635348 @default.
- W2963761908 hasConcept C149923435 @default.
- W2963761908 hasConcept C153294291 @default.
- W2963761908 hasConcept C15744967 @default.
- W2963761908 hasConcept C174084160 @default.
- W2963761908 hasConcept C184779094 @default.
- W2963761908 hasConcept C2778179073 @default.
- W2963761908 hasConcept C2908647359 @default.
- W2963761908 hasConcept C41008148 @default.
- W2963761908 hasConcept C45792457 @default.
- W2963761908 hasConcept C48103436 @default.
- W2963761908 hasConcept C49020025 @default.
- W2963761908 hasConcept C542102704 @default.
- W2963761908 hasConcept C58312451 @default.
- W2963761908 hasConcept C62520636 @default.