Efficient quantum transport in disordered interacting many-body networks
arXiv:1605.01445 · doi:10.1103/PhysRevE.94.042102
Abstract
The coherent transport of fermions in disordered networks of single-particle states connected by -body interactions is studied. These networks are modeled by embedded Gaussian random matrix ensemble (EGE). The conductance bandwidth as well as the ensemble-averaged total current attain their maximal values if the system is highly filled and . For the cases and the bandwidth is minimal. We show that for all parameters the transport is enhanced significantly whenever centrosymmetric ensemble (csEGE) are considered. In this case the transmission shows numerous resonances of perfect transport. Analyzing the transmission by spectral decomposition, we find that centrosymmetry induces strong correlations and enhances the extrema of the distributions. This suppresses destructive interference effects in the system and thus, causes backscattering-free transmission resonances which enhance the overall transport. The distribution of the total current for the csEGE has a very large dominating peak for , close to the highest observed currents.
14 pages, 15 figures
References in corpus (6)
- Perfect Transfer of Arbitrary States in Quantum Spin Networks
- Quantum Communication through Spin Chain Dynamics: an Introductory Overview
- Perfect quantum state transfer with randomly coupled quantum chains
- Applicability of the Wide-Band Limit in DFT-Based Molecular Transport Calculations
- A Statistical Theory of Designed Quantum Transport Across Disordered Networks
- Statistical model for the effects of phase and momentum randomization on electron transport
Cited by in corpus (16)
- On the existence of superradiant excitonic states in microtubules
- Lindblad equation approach to the optimal working point in nonequilibrium stationary states of an interacting electronic one-dimensional system: Application to the spinless Hubbard chain in the clean and in the weakly disordered limit
- Robustness of optimal transport in disordered interacting many-body networks
- Transport in deformed centrosymmetric networks
- Spectral and transport properties of a -symmetric tight-binding chain with gain and loss
- Average-fluctuation separation in energy levels in many-particle quantum systems with -body interactions using -Hermite polynomials
- Random Matrix Ensembles For Many-Body Quantum Systems
- Structure of wavefunction for interacting bosons in mean-field with random -body interactions
- Physics in non-fixed spatial dimensions via random networks
- On optimal currents of indistinguishable particles
- Transfer efficiency enhancement and eigenstate properties in locally symmetric disordered finite chains
- Non-Equilibrium Many-Body Dynamics Following A Quantum Quench
- Thermalization in many-fermion quantum systems with one- plus random -body interactions
- Two species -body embedded Gaussian unitary ensembles: -normal form of the eigenvalue density
- Scattering Theory of Efficient Quantum Transport across Finite Networks
- Bivariate moments of the two-point correlation function for embedded Gaussian unitary ensemble with -body interactions