Matches in SemOpenAlex for { <https://semopenalex.org/work/W2010521904> ?p ?o ?g. }
- W2010521904 abstract "It is demonstrated by means of density functional and ab-initio quantum chemical calculations, that transition metal - carbon systems have the potential to enhance the presently achievable area density of magnetic recording by three orders of magnitude. As a model system, Co_2-benzene with a diameter of 0.5 nm is investigated. It shows a magnetic anisotropy in the order of 0.1 eV per molecule, large enough to store permanently one bit of information at temperatures considerably larger than 4 K. A similar performance can be expected, if cobalt dimers are deposited on graphene or on graphite. It is suggested that the subnanometer bits can be written by simultaneous application of a moderate magnetic and a strong electric field." @default.
- W2010521904 created "2016-06-24" @default.
- W2010521904 creator A5004225741 @default.
- W2010521904 creator A5022085478 @default.
- W2010521904 creator A5024499457 @default.
- W2010521904 creator A5024647505 @default.
- W2010521904 creator A5025377536 @default.
- W2010521904 creator A5035422889 @default.
- W2010521904 creator A5035944789 @default.
- W2010521904 creator A5082964940 @default.
- W2010521904 date "2009-10-26" @default.
- W2010521904 modified "2023-09-23" @default.
- W2010521904 title "Co Dimers on Hexagonal Carbon Rings Proposed as Subnanometer Magnetic Storage Bits" @default.
- W2010521904 cites W150595878 @default.
- W2010521904 cites W1964244117 @default.
- W2010521904 cites W1966396659 @default.
- W2010521904 cites W1966792574 @default.
- W2010521904 cites W1974378834 @default.
- W2010521904 cites W1981368803 @default.
- W2010521904 cites W1982063884 @default.
- W2010521904 cites W1989638193 @default.
- W2010521904 cites W1994242121 @default.
- W2010521904 cites W1995281529 @default.
- W2010521904 cites W1996814495 @default.
- W2010521904 cites W2007932654 @default.
- W2010521904 cites W2024281237 @default.
- W2010521904 cites W2026252575 @default.
- W2010521904 cites W2034773233 @default.
- W2010521904 cites W2037929483 @default.
- W2010521904 cites W2043418391 @default.
- W2010521904 cites W2052154375 @default.
- W2010521904 cites W2059503835 @default.
- W2010521904 cites W2060634742 @default.
- W2010521904 cites W2061346939 @default.
- W2010521904 cites W2069006374 @default.
- W2010521904 cites W2073438543 @default.
- W2010521904 cites W2077617055 @default.
- W2010521904 cites W2078064876 @default.
- W2010521904 cites W2081621848 @default.
- W2010521904 cites W2082189096 @default.
- W2010521904 cites W2083315835 @default.
- W2010521904 cites W2088682725 @default.
- W2010521904 cites W2093646399 @default.
- W2010521904 cites W2120586601 @default.
- W2010521904 cites W2139235078 @default.
- W2010521904 cites W2154356548 @default.
- W2010521904 cites W3102933048 @default.
- W2010521904 doi "https://doi.org/10.1103/physrevlett.103.187201" @default.
- W2010521904 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/19905826" @default.
- W2010521904 hasPublicationYear "2009" @default.
- W2010521904 type Work @default.
- W2010521904 sameAs 2010521904 @default.
- W2010521904 citedByCount "94" @default.
- W2010521904 countsByYear W20105219042012 @default.
- W2010521904 countsByYear W20105219042013 @default.
- W2010521904 countsByYear W20105219042014 @default.
- W2010521904 countsByYear W20105219042015 @default.
- W2010521904 countsByYear W20105219042016 @default.
- W2010521904 countsByYear W20105219042017 @default.
- W2010521904 countsByYear W20105219042018 @default.
- W2010521904 countsByYear W20105219042019 @default.
- W2010521904 countsByYear W20105219042020 @default.
- W2010521904 countsByYear W20105219042021 @default.
- W2010521904 countsByYear W20105219042022 @default.
- W2010521904 countsByYear W20105219042023 @default.
- W2010521904 crossrefType "journal-article" @default.
- W2010521904 hasAuthorship W2010521904A5004225741 @default.
- W2010521904 hasAuthorship W2010521904A5022085478 @default.
- W2010521904 hasAuthorship W2010521904A5024499457 @default.
- W2010521904 hasAuthorship W2010521904A5024647505 @default.
- W2010521904 hasAuthorship W2010521904A5025377536 @default.
- W2010521904 hasAuthorship W2010521904A5035422889 @default.
- W2010521904 hasAuthorship W2010521904A5035944789 @default.
- W2010521904 hasAuthorship W2010521904A5082964940 @default.
- W2010521904 hasBestOaLocation W20105219042 @default.
- W2010521904 hasConcept C104779481 @default.
- W2010521904 hasConcept C115260700 @default.
- W2010521904 hasConcept C121332964 @default.
- W2010521904 hasConcept C128765274 @default.
- W2010521904 hasConcept C140205800 @default.
- W2010521904 hasConcept C147597530 @default.
- W2010521904 hasConcept C152365726 @default.
- W2010521904 hasConcept C159467904 @default.
- W2010521904 hasConcept C159985019 @default.
- W2010521904 hasConcept C171250308 @default.
- W2010521904 hasConcept C183971685 @default.
- W2010521904 hasConcept C185592680 @default.
- W2010521904 hasConcept C191897082 @default.
- W2010521904 hasConcept C192562407 @default.
- W2010521904 hasConcept C26873012 @default.
- W2010521904 hasConcept C2779698641 @default.
- W2010521904 hasConcept C2781442258 @default.
- W2010521904 hasConcept C30080830 @default.
- W2010521904 hasConcept C32546565 @default.
- W2010521904 hasConcept C32909587 @default.
- W2010521904 hasConcept C32938098 @default.
- W2010521904 hasConcept C41999313 @default.
- W2010521904 hasConcept C515602321 @default.
- W2010521904 hasConcept C62520636 @default.
- W2010521904 hasConcept C8010536 @default.