Matches in SemOpenAlex for { <https://semopenalex.org/work/W2740836249> ?p ?o ?g. }
- W2740836249 abstract "The non-Abelian geometric phases appear only in a degenerate subspace and the most familiar model with such a subspace is the $N$-pod system. Here we propose an alternative system to realize a non-Abelian gauge structure. We demonstrate that a three-level system with a triangular form can have two degenerate eigenstates which can induce non-Abelian geometric phases, and notably they are the lowest eigenstates of the system. As an application of the degenerate subspace, we propose an experimentally feasible scheme to realize a universal set of quantum gates based on the adiabatic non-Abelian geometric phases. To shorten the evolution time constrained by the adiabatic condition, the shortcut to adiabaticity is adopted to speed up the adiabatic geometric quantum gates. The combination of the intrinsic geometric characteristic and shortcut to adiabaticity makes the quantum operations fast and robust against certain control errors." @default.
- W2740836249 created "2017-08-08" @default.
- W2740836249 creator A5006580225 @default.
- W2740836249 creator A5016638104 @default.
- W2740836249 creator A5031491007 @default.
- W2740836249 creator A5033913454 @default.
- W2740836249 creator A5052828153 @default.
- W2740836249 date "2017-07-27" @default.
- W2740836249 modified "2023-10-14" @default.
- W2740836249 title "Degenerate eigensubspace in a triangle-level system and its geometric quantum control" @default.
- W2740836249 cites W1155123831 @default.
- W2740836249 cites W1484801109 @default.
- W2740836249 cites W1514785357 @default.
- W2740836249 cites W1557190042 @default.
- W2740836249 cites W1834231020 @default.
- W2740836249 cites W1969573330 @default.
- W2740836249 cites W1988909035 @default.
- W2740836249 cites W1990997025 @default.
- W2740836249 cites W1993783959 @default.
- W2740836249 cites W1997460634 @default.
- W2740836249 cites W2000487666 @default.
- W2740836249 cites W2002181702 @default.
- W2740836249 cites W2008791564 @default.
- W2740836249 cites W2013113070 @default.
- W2740836249 cites W2013172220 @default.
- W2740836249 cites W2014791928 @default.
- W2740836249 cites W2015683881 @default.
- W2740836249 cites W2017521198 @default.
- W2740836249 cites W2019376066 @default.
- W2740836249 cites W2035577930 @default.
- W2740836249 cites W2040497983 @default.
- W2740836249 cites W2041209710 @default.
- W2740836249 cites W2045791239 @default.
- W2740836249 cites W2046951295 @default.
- W2740836249 cites W2053589583 @default.
- W2740836249 cites W2055611353 @default.
- W2740836249 cites W2059023154 @default.
- W2740836249 cites W2059472427 @default.
- W2740836249 cites W2063047167 @default.
- W2740836249 cites W2069514684 @default.
- W2740836249 cites W2074314283 @default.
- W2740836249 cites W2083085524 @default.
- W2740836249 cites W2086829205 @default.
- W2740836249 cites W2097780038 @default.
- W2740836249 cites W2108658419 @default.
- W2740836249 cites W2110857686 @default.
- W2740836249 cites W2127595774 @default.
- W2740836249 cites W2147846452 @default.
- W2740836249 cites W2151415361 @default.
- W2740836249 cites W2152240519 @default.
- W2740836249 cites W2260423231 @default.
- W2740836249 cites W2343960082 @default.
- W2740836249 cites W3102897501 @default.
- W2740836249 cites W3103424332 @default.
- W2740836249 cites W3103505052 @default.
- W2740836249 doi "https://doi.org/10.1103/physreva.96.012333" @default.
- W2740836249 hasPublicationYear "2017" @default.
- W2740836249 type Work @default.
- W2740836249 sameAs 2740836249 @default.
- W2740836249 citedByCount "11" @default.
- W2740836249 countsByYear W27408362492018 @default.
- W2740836249 countsByYear W27408362492019 @default.
- W2740836249 countsByYear W27408362492021 @default.
- W2740836249 countsByYear W27408362492023 @default.
- W2740836249 crossrefType "journal-article" @default.
- W2740836249 hasAuthorship W2740836249A5006580225 @default.
- W2740836249 hasAuthorship W2740836249A5016638104 @default.
- W2740836249 hasAuthorship W2740836249A5031491007 @default.
- W2740836249 hasAuthorship W2740836249A5033913454 @default.
- W2740836249 hasAuthorship W2740836249A5052828153 @default.
- W2740836249 hasConcept C109663097 @default.
- W2740836249 hasConcept C114614502 @default.
- W2740836249 hasConcept C121332964 @default.
- W2740836249 hasConcept C134306372 @default.
- W2740836249 hasConcept C136170076 @default.
- W2740836249 hasConcept C158693339 @default.
- W2740836249 hasConcept C17269025 @default.
- W2740836249 hasConcept C181830111 @default.
- W2740836249 hasConcept C184720557 @default.
- W2740836249 hasConcept C202444582 @default.
- W2740836249 hasConcept C2778926657 @default.
- W2740836249 hasConcept C32834561 @default.
- W2740836249 hasConcept C33923547 @default.
- W2740836249 hasConcept C41008148 @default.
- W2740836249 hasConcept C62520636 @default.
- W2740836249 hasConcept C72319582 @default.
- W2740836249 hasConcept C84114770 @default.
- W2740836249 hasConceptScore W2740836249C109663097 @default.
- W2740836249 hasConceptScore W2740836249C114614502 @default.
- W2740836249 hasConceptScore W2740836249C121332964 @default.
- W2740836249 hasConceptScore W2740836249C134306372 @default.
- W2740836249 hasConceptScore W2740836249C136170076 @default.
- W2740836249 hasConceptScore W2740836249C158693339 @default.
- W2740836249 hasConceptScore W2740836249C17269025 @default.
- W2740836249 hasConceptScore W2740836249C181830111 @default.
- W2740836249 hasConceptScore W2740836249C184720557 @default.
- W2740836249 hasConceptScore W2740836249C202444582 @default.
- W2740836249 hasConceptScore W2740836249C2778926657 @default.
- W2740836249 hasConceptScore W2740836249C32834561 @default.
- W2740836249 hasConceptScore W2740836249C33923547 @default.