1983Progress of Theoretical PhysicsOpen access

Theory of Electronic Structures and Lattice Distortions in Polyacetylene and Itinerant Peierls Systems. II: Coulomb Interaction Dependences of the HF Ground State, Lattice Dimerization and 1Bu Excited State in Regular Trans-Polyacetylene

Hideo Fukutome, Masaki Sasai

Open full text 60 citations

Abstract

We study the Coulomb interaction dependences of the HF ground state, lattice dimerization and 1Bu excited state in regular trans-polyacetylene using the PPP hamiltonian model developed in a previous paper. The nature of the HF ground state is determined by the relative magnitudes of the on site and nearest neighbour parts and the screening of the longer range part of the effective Coulomb potential. The Coulomb interaction with relatively large nearest neighbour part and not too strongly screened longer range part induces lattice dimerization. The driving force of the Coulomb induced dimerization is the nearest neighbour exchange interaction. The lattice dimerization in polyacetylene is due to the Coulomb mechanism. The SSH model is implicitly taking into account the nearest neighbour exchange interaction. The Franck-Condon band gap is mostly determined by the nearest neighbour exchange interaction. The 1Bu excited state is excitonic. The exciton binding energy is estimated for the effective Coulomb potential with the screened long range part. It is not large owing to very small effective mass of electron and hole. To explain the observed 1Bu excitation energy, the short range part of the effective Coulomb potential must be screened by about half compared to the one in small conjugate molecules. The condition for splitting of the exciton into a zwitter-ionic pair of charged solitons is discussed.

Open-access reader

About this research paper

What this paper is about

We study the Coulomb interaction dependences of the HF ground state, lattice dimerization and 1Bu excited state in regular trans-polyacetylene using the PPP hamiltonian model developed in a previous paper. The nature of the HF ground state is determined by the relative magnitudes of the on site and nearest neighbour parts and the screening of the longer range part of the effective Coulomb potential. The Coulomb interaction with relatively large nearest neighbour part and not too strongly screened longer range part induces lattice dimerization. The driving force of the Coulomb induced dimerization is the nearest neighbour exchange interaction. The lattice dimerization in polyacetylene is due to the Coulomb mechanism. The SSH model is implicitly taking into account the nearest neighbour exchange interaction. The Franck-Condon band gap is mostly determined by the nearest neighbour exchange interaction. The 1Bu excited state is excitonic. The exciton binding energy is estimated for the effective Coulomb potential with the screened long range part. It is not large owing to very small effective mass of electron and hole. To explain the observed 1Bu excitation energy, the short range part of the effective Coulomb potential must be screened by about half compared to the one in small conjugate molecules. The condition for splitting of the exciton into a zwitter-ionic pair of charged solitons is discussed.

Why it matters

OpenAlex reports 60 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

We study the Coulomb interaction dependences of the HF ground state, lattice dimerization and 1Bu excited state in regular trans-polyacetylene using the PPP hamiltonian model developed in a previous paper. The nature of the HF ground state is determined by the relative magnitudes of the on site and nearest neighbour parts and the screening of the longer range part of the effective Coulomb potential. The Coulomb interaction with relatively large nearest neighbour part and not too strongly screened longer range part induces lattice dimerization. The driving force of the Coulomb induced dimerization is the nearest neighbour exchange interaction. The lattice dimerization in polyacetylene is due to the Coulomb mechanism. The SSH model is implicitly taking into account the nearest neighbour exchange interaction. The Franck-Condon band gap is mostly determined by the nearest neighbour exchange interaction. The 1Bu excited state is excitonic. The exciton binding energy is estimated for the effective Coulomb potential with the screened long range part. It is not large owing to very small effective mass of electron and hole. To explain the observed 1Bu excitation energy, the short range part of the effective Coulomb potential must be screened by about half compared to the one in small conjugate molecules. The condition for splitting of the exciton into a zwitter-ionic pair of charged solitons is discussed.

Key concepts: Polyacetylene, Coulomb, Ground state, Excited state, Physics, Hamiltonian (control theory), Condensed matter physics, Lattice (music)

Related papers

Back to paper searchBrowse research topicsOriginal source
Theory of Electronic Structures and Lattice Distortions in Polyacetylene and Itinerant Peierls Systems. II: Coulomb Interaction Dependences of the HF Ground State, Lattice Dimerization and 1Bu Excited State in Regular Trans-Polyacetylene — Research Paper | ScholarLens