Matches in SemOpenAlex for { <https://semopenalex.org/work/W2006943485> ?p ?o ?g. }
- W2006943485 abstract "We use inelastic neutron scattering to study the low energy spin excitations in moderately doped non-superconducting Fe$_{1.01}$Te$_{0.72}$Se$_{0.28}$. The spin excitations in this system contain components near (0.5,0,0) and (0.5,0.5,0) in a-b plane reciprocal lattice units using tetragonal unit cell notation (a=b=3.772 AA and c=6.061 AA). At low energies the scattering is centered around (0.5,0,0). With increasing energy, the spectral weight of low energy spin excitations centered around (0.5,0,0) abruptly shifts around 3 meV to the incommensurate spin excitations centered around (0.5,0.5,0). However both types of spin fluctuations exhibit the identical temperature dependence. These results indicate that the (0.5,0,0) type spin excitations and the incommensurate excitations around the (0.5,0.5,0) position have a common origin and both must be taken into account to understand the nature of magnetism and superconducting pairing in the iron chalcogenides." @default.
- W2006943485 created "2016-06-24" @default.
- W2006943485 creator A5005448826 @default.
- W2006943485 creator A5016528610 @default.
- W2006943485 creator A5016782700 @default.
- W2006943485 creator A5025389738 @default.
- W2006943485 creator A5044130324 @default.
- W2006943485 creator A5070545501 @default.
- W2006943485 creator A5077771208 @default.
- W2006943485 creator A5081700186 @default.
- W2006943485 date "2011-12-05" @default.
- W2006943485 modified "2023-10-16" @default.
- W2006943485 title "Common origin of the two types of magnetic fluctuations in iron chalcogenides" @default.
- W2006943485 cites W1512637664 @default.
- W2006943485 cites W1524207391 @default.
- W2006943485 cites W1527622477 @default.
- W2006943485 cites W1547901967 @default.
- W2006943485 cites W1548681251 @default.
- W2006943485 cites W1559856699 @default.
- W2006943485 cites W1659501886 @default.
- W2006943485 cites W1672762932 @default.
- W2006943485 cites W1795898088 @default.
- W2006943485 cites W1796141723 @default.
- W2006943485 cites W1819651740 @default.
- W2006943485 cites W1836494469 @default.
- W2006943485 cites W1967201870 @default.
- W2006943485 cites W1970033484 @default.
- W2006943485 cites W1971212666 @default.
- W2006943485 cites W1971995176 @default.
- W2006943485 cites W1972045032 @default.
- W2006943485 cites W1972679113 @default.
- W2006943485 cites W1974382257 @default.
- W2006943485 cites W1990640126 @default.
- W2006943485 cites W1991464345 @default.
- W2006943485 cites W1995739473 @default.
- W2006943485 cites W1999704888 @default.
- W2006943485 cites W2001281173 @default.
- W2006943485 cites W2001519974 @default.
- W2006943485 cites W2014565327 @default.
- W2006943485 cites W2016492353 @default.
- W2006943485 cites W2019627302 @default.
- W2006943485 cites W2019940844 @default.
- W2006943485 cites W2032631059 @default.
- W2006943485 cites W2036607990 @default.
- W2006943485 cites W2040187759 @default.
- W2006943485 cites W2043309485 @default.
- W2006943485 cites W2056371444 @default.
- W2006943485 cites W2056560172 @default.
- W2006943485 cites W2056663598 @default.
- W2006943485 cites W2057418971 @default.
- W2006943485 cites W2061262751 @default.
- W2006943485 cites W2080510573 @default.
- W2006943485 cites W2081583645 @default.
- W2006943485 cites W2093837259 @default.
- W2006943485 cites W2130309946 @default.
- W2006943485 cites W2145675868 @default.
- W2006943485 cites W2160373140 @default.
- W2006943485 cites W2242745584 @default.
- W2006943485 cites W2246793498 @default.
- W2006943485 cites W3098175039 @default.
- W2006943485 cites W3098729210 @default.
- W2006943485 cites W3098970500 @default.
- W2006943485 cites W3098979843 @default.
- W2006943485 cites W3104311229 @default.
- W2006943485 doi "https://doi.org/10.1103/physrevb.84.214407" @default.
- W2006943485 hasPublicationYear "2011" @default.
- W2006943485 type Work @default.
- W2006943485 sameAs 2006943485 @default.
- W2006943485 citedByCount "15" @default.
- W2006943485 countsByYear W20069434852012 @default.
- W2006943485 countsByYear W20069434852013 @default.
- W2006943485 countsByYear W20069434852014 @default.
- W2006943485 countsByYear W20069434852015 @default.
- W2006943485 countsByYear W20069434852016 @default.
- W2006943485 countsByYear W20069434852017 @default.
- W2006943485 crossrefType "journal-article" @default.
- W2006943485 hasAuthorship W2006943485A5005448826 @default.
- W2006943485 hasAuthorship W2006943485A5016528610 @default.
- W2006943485 hasAuthorship W2006943485A5016782700 @default.
- W2006943485 hasAuthorship W2006943485A5025389738 @default.
- W2006943485 hasAuthorship W2006943485A5044130324 @default.
- W2006943485 hasAuthorship W2006943485A5070545501 @default.
- W2006943485 hasAuthorship W2006943485A5077771208 @default.
- W2006943485 hasAuthorship W2006943485A5081700186 @default.
- W2006943485 hasBestOaLocation W20069434852 @default.
- W2006943485 hasConcept C104015590 @default.
- W2006943485 hasConcept C121332964 @default.
- W2006943485 hasConcept C14103023 @default.
- W2006943485 hasConcept C142199849 @default.
- W2006943485 hasConcept C170751736 @default.
- W2006943485 hasConcept C191486275 @default.
- W2006943485 hasConcept C197162081 @default.
- W2006943485 hasConcept C207114421 @default.
- W2006943485 hasConcept C24890656 @default.
- W2006943485 hasConcept C26873012 @default.
- W2006943485 hasConcept C2781204021 @default.
- W2006943485 hasConcept C31198834 @default.
- W2006943485 hasConcept C42704618 @default.
- W2006943485 hasConcept C44280652 @default.
- W2006943485 hasConcept C54101563 @default.