Matches in SemOpenAlex for { <https://semopenalex.org/work/W2008154906> ?p ?o ?g. }
- W2008154906 abstract "We investigate the effect of strain-induced gauge fields on statistical distribution of energy levels of triangular graphene nanoflakes with zigzag edges. In the absence of strain fields but in the presence of weak potential disorder such systems were found in Ref. [1] to display the spectral statistics of the Gaussian unitary ensemble (GUE) due to the effective time-reversal (symplectic) symmetry breaking. Here show that, in the absence of disorder, strain fields may solely lead to spectral fluctuations of GUE providing a nanoflake is deformed such that all its geometric symmetries are broken. In a particular case when a single mirror symmetry is preserved the spectral statistics follow the Gaussian orthogonal ensemble (GOE) rather then GUE. The corresponding transitions to quantum chaos are rationalized by means of additive random-matrix models and the analogy between strain-induced gauge fields and real magnetic fields is discussed." @default.
- W2008154906 created "2016-06-24" @default.
- W2008154906 creator A5008437462 @default.
- W2008154906 date "2013-05-17" @default.
- W2008154906 modified "2023-10-14" @default.
- W2008154906 title "Strain-induced transitions to quantum chaos and effective time-reversal symmetry breaking in triangular graphene nanoflakes" @default.
- W2008154906 cites W1605518721 @default.
- W2008154906 cites W1635273272 @default.
- W2008154906 cites W1677099425 @default.
- W2008154906 cites W1948123192 @default.
- W2008154906 cites W1968962150 @default.
- W2008154906 cites W1972288293 @default.
- W2008154906 cites W1973312432 @default.
- W2008154906 cites W1974447177 @default.
- W2008154906 cites W1975251131 @default.
- W2008154906 cites W1982311541 @default.
- W2008154906 cites W1987403044 @default.
- W2008154906 cites W1992232610 @default.
- W2008154906 cites W1993542247 @default.
- W2008154906 cites W1997329134 @default.
- W2008154906 cites W2002888186 @default.
- W2008154906 cites W2003146146 @default.
- W2008154906 cites W2010922401 @default.
- W2008154906 cites W2010971702 @default.
- W2008154906 cites W2018947791 @default.
- W2008154906 cites W2024953677 @default.
- W2008154906 cites W2030628997 @default.
- W2008154906 cites W2032752920 @default.
- W2008154906 cites W2035743770 @default.
- W2008154906 cites W2041596672 @default.
- W2008154906 cites W2041829808 @default.
- W2008154906 cites W2057579026 @default.
- W2008154906 cites W2057936436 @default.
- W2008154906 cites W2064630448 @default.
- W2008154906 cites W2076261999 @default.
- W2008154906 cites W2076699346 @default.
- W2008154906 cites W2078473459 @default.
- W2008154906 cites W2078792724 @default.
- W2008154906 cites W2080976291 @default.
- W2008154906 cites W2082672516 @default.
- W2008154906 cites W2084496036 @default.
- W2008154906 cites W2087941406 @default.
- W2008154906 cites W2093459261 @default.
- W2008154906 cites W2101112255 @default.
- W2008154906 cites W2101365750 @default.
- W2008154906 cites W2105685140 @default.
- W2008154906 cites W2107956010 @default.
- W2008154906 cites W2114351820 @default.
- W2008154906 cites W2119373267 @default.
- W2008154906 cites W2120062331 @default.
- W2008154906 cites W2121500372 @default.
- W2008154906 cites W2132583691 @default.
- W2008154906 cites W2134090723 @default.
- W2008154906 cites W2138931463 @default.
- W2008154906 cites W2147199374 @default.
- W2008154906 cites W2153523500 @default.
- W2008154906 cites W2160357945 @default.
- W2008154906 cites W2166075081 @default.
- W2008154906 cites W2326815493 @default.
- W2008154906 cites W2328102607 @default.
- W2008154906 cites W2963322222 @default.
- W2008154906 cites W3141201028 @default.
- W2008154906 cites W40608102 @default.
- W2008154906 cites W4238359406 @default.
- W2008154906 cites W79001361 @default.
- W2008154906 doi "https://doi.org/10.1103/physrevb.87.195431" @default.
- W2008154906 hasPublicationYear "2013" @default.
- W2008154906 type Work @default.
- W2008154906 sameAs 2008154906 @default.
- W2008154906 citedByCount "22" @default.
- W2008154906 countsByYear W20081549062014 @default.
- W2008154906 countsByYear W20081549062016 @default.
- W2008154906 countsByYear W20081549062017 @default.
- W2008154906 countsByYear W20081549062018 @default.
- W2008154906 countsByYear W20081549062019 @default.
- W2008154906 countsByYear W20081549062020 @default.
- W2008154906 countsByYear W20081549062021 @default.
- W2008154906 countsByYear W20081549062022 @default.
- W2008154906 countsByYear W20081549062023 @default.
- W2008154906 crossrefType "journal-article" @default.
- W2008154906 hasAuthorship W2008154906A5008437462 @default.
- W2008154906 hasBestOaLocation W20081549062 @default.
- W2008154906 hasConcept C121332964 @default.
- W2008154906 hasConcept C136269434 @default.
- W2008154906 hasConcept C15184713 @default.
- W2008154906 hasConcept C158693339 @default.
- W2008154906 hasConcept C163716315 @default.
- W2008154906 hasConcept C168619227 @default.
- W2008154906 hasConcept C192271897 @default.
- W2008154906 hasConcept C204795200 @default.
- W2008154906 hasConcept C2524010 @default.
- W2008154906 hasConcept C26873012 @default.
- W2008154906 hasConcept C2779886137 @default.
- W2008154906 hasConcept C30080830 @default.
- W2008154906 hasConcept C33923547 @default.
- W2008154906 hasConcept C52703039 @default.
- W2008154906 hasConcept C62520636 @default.
- W2008154906 hasConcept C64812099 @default.
- W2008154906 hasConcept C84114770 @default.
- W2008154906 hasConcept C96469262 @default.