Antiscreening and exciton binding in quasi-one-dimensional systems
Abstract
We predict antiscreening of the electron–hole interaction at large distances, independent of the distribution of the electronic response across the cross section of a quasi-one-dimensional (1D) wire system and of the chosen 1D hydrogen potential. The transition between screening and antiscreening is governed by the 1D static electronic polarizability α1D and the wire radius R, and is described through a 1D Rytova–Keldysh-like potential. The enhancement of the exciton binding is demonstrated over a wide parameter range of α1D and R, yielding a phase diagram that separates regions of exciton binding dominated by electronic polarization from those where antiscreening enforces stronger binding. Luttinger-liquid behavior is identified. Binding effects and (anti)screening are explicitly discussed for atomic wires based on MgN2, S3, Te3, As2S3, and Bi2Te3.
Article Details
Journal Info
Applied Physics Letters
American Institute of Physics
Authors (4)
F. Bechstedt
Institut für Festkörpertheorie und -optik, Friedrich-Schiller-Universität Jena 1 , Max-Wien-Platz 1, 07743 Jena,
S. Grillo
Department of Physics and INFN, University of Rome Tor Vergata 2 , via della Ricerca Scientifica 1, 00133 Rome,
O. Pulci
Max Planck Institute for the Structure and Dynamics of Matter and Center for Free-Electron Laser Science 3 , Hamburg 22761,
P. Gori
Department of Industrial, Electronic and Mechanical Engineering, Roma Tre University 4 , Via della Vasca Navale 79, 00146 Rome,