The Berry phase of dislocations in graphene and valley conserving decoherence
arXiv:0811.1890 · doi:10.1103/PhysRevB.79.155111
Abstract
We demonstrate that dislocations in the graphene lattice give rise to electron Berry phases equivalent to quantized values {0,1/3,-1/3} in units of the flux quantum, but with an opposite sign for the two valleys. An elementary scale consideration of a graphene Aharonov-Bohm ring equipped with valley filters on both terminals, encircling a dislocation, says that in the regime where the intervalley mean free path is large compared to the intravalley phase coherence length, such that the valley quantum numbers can be regarded as conserved on the relevant scale, the coherent valley-polarized currents sensitive to the topological phases have to traverse the device many times before both valleys contribute, and this is not possible at intermediate temperatures where the latter length becomes of order of the device size, thus leading to an apparent violation of the basic law of linear transport that magnetoconductance is even in the applied flux. We discuss this discrepancy in the Feynman path picture of dephasing, when addressing the transition from quantum to classical dissipative transport. We also investigate this device in the scattering matrix formalism, accounting for the effects of decoherence by the Buttiker dephasing voltage probe type model which conserves the valleys, where the magnetoconductance remains even in the flux, also when different decoherence times are allowed for the individual, time reversal connected, valleys.
14 pages, 7 figures; revised text, added figure, accepted for publication by PRB
References in corpus (22)
- Electric Field Effect in Atomically Thin Carbon Films
- The electronic properties of graphene
- Quantum Spin Hall Insulator State in HgTe Quantum Wells
- Valley filter and valley valve in graphene
- Measurement of Scattering Rate and Minimum Conductivity in Graphene
- Topological confinement in bilayer graphene
- Boundary conditions for Dirac fermions on a terminated honeycomb lattice
- Weak localisation in graphene flakes
- Intervalley scattering, long-range disorder, and effective time reversal symmetry breaking in graphene
- Aharonov-Bohm effect and broken valley-degeneracy in graphene rings
- Aharonov-Bohm effect in graphene
- Domain walls in gapped graphene
- Transport Length Scales in Disordered Graphene-based Materials: Strong Localization Regimes and Dimensionality Effects
- Electron-phonon coupling and electron self-energy in electron-doped graphene: calculation of angular resolved photoemission spectra
- Electronic properties of curved graphene sheets
- Ballistic Hot Electron Transport in Graphene
- Geometric Phases in Graphitic Cones
- Non-Abelian hydrodynamics and the flow of spin in spin-orbit coupled substances
- Electronic properties of graphene with a topological defect
- Quantum Blockades and Loop Currents in Graphene with Topological Defects
- Experimental Test of Universal Conductance Fluctuations by means of Wave-Chaotic Microwave Cavities
- Nonequilibrium valley polarization in graphene nanoconstrictions
Cited by in corpus (21)
- Polycrystalline graphene and other two-dimensional materials
- Electronic States of Graphene Grain Boundaries
- Imaging moiré deformation and dynamics in twisted bilayer graphene
- The Aharonov-Bohm effect in graphene rings
- Parallel Transport of Electrons in Graphene Parallels Gravity
- Topological Aspects of Charge-Carrier Transmission across Grain Boundaries in Graphene
- Kaluza-Klein description of geometric phases in graphene
- Zero-energy states bound to a magnetic pi-flux vortex in a two-dimensional topological insulator
- Emergent geometry experienced by fermions in graphene in the presence of dislocations
- Strong long-range relaxations of structural defects in graphene simulated using a new semi-empirical potential
- Graphene wormhole trapped by external magnetic field
- Electronic properties of disclinated flexible membrane beyond the inextensional limit: Application to graphene
- Scalar Casimir effect in a high-dimensional cosmic dispiration spacetime
- Valley-dependent Lorentz force and Aharonov-Bohm phase in strained graphene p-n junction
- Straining the Identity of Majorana Fermions
- Dirac-Schrodinger transformations in contacted graphene structures
- Persistent currents in absence of magnetic field in graphene nanorings: The ambiguous role of inter valley scattering
- Dirac fermions on a disclinated flexible surface
- The effect of Dirac phase on acoustic vortex in media with screw dislocation
- The Effect of Noise on the Dirac Phase of Electron in The Presence of Screw Dislocation
- Characterization of the Melting Transition in Two Dimensions at Vanishing External Pressure Using Molecular Dynamics Simulations