Non-equilibrium Green's function study of magneto-conductance features and oscillations in clean and disordered nanowires
arXiv:1709.01623 · doi:10.1103/PhysRevB.98.125417
Abstract
We explore various aspects of magneto-conductance oscillations in semiconductor nanowires, developing quantum transport models based on the non-equilibrium Green's function formalism. In the clean case, Aharonov-Bohm (AB - h/e) oscillations are found to be dominant, contingent upon the surface confinement of electrons in the nanowire. We also numerically study disordered nanowires of finite length, bridging a gap in the existing literature. By varying the nanowire length and disorder strength, we identify the transition where Al'tshuler-Aronov-Spivak (AAS - h/2e) oscillations start dominating, noting the effects of considering an open system. Moreover, we demonstrate how the relative magnitudes of the scattering length and the device dimensions govern the relative dominance of these harmonics with energy, revealing that the AAS oscillations emerge and start dominating from the center of the band, much higher in energy than the conduction band-edge. We also show the ways of suppressing the oscillatory components (AB and AAS) to observe the non-oscillatory weak localization corrections, noting the interplay of scattering, incoherence/dephasing, the geometry of electronic distribution, and orientation of magnetic field. This is followed by a study of surface roughness which shows contrasting effects depending on its strength and type, ranging from magnetic depopulation to strong AAS oscillations. Subsequently, we show that dephasing causes a progressive degradation of the higher harmonics, explaining the re-emergence of the AB component even in long and disordered nanowires. Lastly, we show that our model qualitatively reproduces the experimental magneto-conductance spectrum in [Holloway et al, PRB 91, 045422 (2015)] reasonably well while demonstrating the necessity of spatial-correlations in the disorder potential, and dephasing.
15 pages, 18 figures
References in corpus (19)
- Aharonov-Bohm interference in topological insulator nanoribbons
- Aharonov-Bohm oscillations in disordered topological insulator nanowires
- Anomalous Aharonov-Bohm conductance oscillations from topological insulator surface states
- On Landauer vs. Boltzmann and Full Band vs. Effective Mass Evaluation of Thermoelectric Transport Coefficients
- Non-equilibrium Green s function based model for dephasing in quantum transport
- Experimental and materials considerations for the topological superconducting state in electron and hole doped semiconductors: searching for non-Abelian Majorana modes in 1D nanowires and 2D heterostructures
- Quasi-ballistic transport of Dirac fermions in a Bi2Se3 nanowire
- Probing Spin Helical Surface States in Topological HgTe Nanowires
- Quantum interference of surface states in bismuth nanowires probed by the Aharonov-Bohm oscillatory behavior of the magnetoresistance
- Magnetoconductance oscillations in quasiballistic multimode nanowires
- Incoherent scattering can favorably influence energy filtering in nanostructured thermoelectrics
- Analytical and numerical study of uncorrelated disorder on a honeycomb lattice
- Theory of Transmission through disordered superlattices
- Magnetoconductance signatures of subband structure in semiconductor nanowires
- Quantum coherence and its dephasing in the giant spin Hall effect and nonlocal voltage generated by magnetotransport through multiterminal graphene bars
- Quantum Interference Effects in Topological Nanowires In a Longitudinal Magnetic Field
- Aharonov-Bohm Oscillations in Singly-Connected Disordered Conductors
- Diffusion and localization in carbon nanotubes and graphene nanoribbons
- Competition between magnetic field dependent band structure and coherent backscattering in multiwall carbon nanotubes
Cited by in corpus (9)
- Supercurrent Interference in Semiconductor Nanowire Josephson Junctions
- Robust all-electrical topological valley filtering using monolayer 2D-Xenes
- Persistent spin textures and currents in wurtzite nanowire-based quantum structures
- Role of dephasing on the conductance signatures of Majorana zero modes
- Aharonov-Bohm Effect in Three-dimensional Higher-order Topological Insulator
- Momentum relaxation effects in 2D-Xene field effect device structures
- Quantum Hierarchical Fokker-Planck Equations with U(1) Gauge Fields (U(1)-QHFPE): A Computational Framework for Aharonov-Bohm Effects
- Proposal for a solid-state magnetoresistive Larmor quantum clock
- Quantum transport in quasi-periodic lattice systems in presence of Büttiker probes