Carbon nanotubes as excitonic insulators
arXiv:1703.09235 · doi:10.1038/s41467-017-01660-8
Abstract
Fifty years ago Walter Kohn speculated that a zero-gap semiconductor might be unstable against the spontaneous generation of excitons---electron-hole pairs bound together by Coulomb attraction. The reconstructed ground state would then open a gap breaking the symmetry of the underlying lattice, a genuine consequence of electronic correlations. Here we show that this excitonic insulator is realized in zero-gap carbon nanotubes by performing first-principles calculations through many-body perturbation theory as well as quantum Monte Carlo. The excitonic order modulates the charge between the two carbon sublattices opening an experimentally observable gap, which scales as the inverse of the tube radius and weakly depends on the axial magnetic field. Our findings call into question the Luttinger liquid paradigm for nanotubes and provide tests to experimentally discriminate between excitonic and Mott insulator.
This document includes the Supplementary Information. We have corrected typos in Eq. (56) and sublattice vector definitions that were spotted by Dr. Giacomo Sesti after the paper was published
References in corpus (18)
- Quantum ESPRESSO: a modular and open-source software project for quantum simulations of materials
- Coupling of Spin and Orbital Motion of Electrons in Carbon Nanotubes
- High-temperature superfluidity with indirect excitons in van der Waals heterostructures
- Exciton binding energies in carbon nanotubes from two-photon photoluminescence
- Room-Temperature Superfluidity in Graphene Bilayers
- Is graphene in vacuum an insulator?
- Exciton Condensation and Perfect Coulomb Drag
- Excitonic condensation of massless fermions in graphene bilayers
- Large spin-orbit coupling in carbon nanotubes
- Supercritical Coulomb center and excitonic instability in graphene
- Renormalization group approach to 2D Coulomb interacting Dirac fermions with random gauge potential
- Exciton formation in graphene bilayer
- Giant modulation of the electronic band gap of carbon nanotubes by dielectric screening
- Exact special twist method for quantum Monte Carlo simulations
- Geminal embedding scheme for optimal atomic basis set construction in correlated calculations
- Twist instability in strongly correlated carbon nanotubes
- Coherent transport in homojunction between excitonic insulator and semimetal
- Anomalous magnetization of a carbon nanotube as an excitonic insulator
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