Skip to content

awc307/ANR-ACCEPT

Folders and files

NameName
Last commit message
Last commit date

Latest commit

 

History

39 Commits
 
 
 
 
 
 
 
 
 
 
 
 

Repository files navigation

AnharmoniC and exChangE interactions in Phonon specTra (ACCEPT)

Welcome to the website for the ANR project "AnharmoniC and exChangE interactions in Phonon specTra" (Grant No. ANR-19-CE24-0028).
This project is an intenernational collaboration (PRCI) between the l'institut des Nanosciences de Paris (INSP, Sorbonne Université), the University of Trento and The University of Luxembourg. It is scheduled to run between 1/12/2020- 30/06/2024.

Direction

The PI for ACCEPT in France is Dr Alex W Chin (CNRS), who is based in the Photonics and Coherence of Spin (PHOCOS) group at INSP.
The PI for ACCEPT in Luxembourg is Professor Ludger Wirtz, who is the head of the Physics and Materials Science Research Unit at the University of Luxembourg.
Contact details can be found by following the links, above.

Mission

The goal of the project is to go beyond the state of the art in the calculation of phononic and excitonic spectra of correlated materials. We will develop a systematic finite-difference approach to evaluate the electron-phonon coupling in solids with the inclusion of exact exchange and we will obtain non-perturbative temperature-dependent anharmonic phonon spectra via the self-consistent harmonic approximation. Through the application of real-time, finite-temperature tensor network algorithms, we will also explore the photodynamics, excitonic responses and entanglement spectra of low dimensional materials, including the often very strong coupling of optical excitations to phonons. We will apply these methods to emerging and technologically relevant materials, with a particular focus on:

  1. Structural and electronic instabilities in linear pi-conjugated materials.
  2. The optical spectra, wave functions and real-time dynamics of excitons in organic polymers.
  3. The ferroelectric instability in bulk (SnTe) and single layer (SnTe) thermoelectrics.
  4. The accurate calculation of charge density wave critical temperatures in single layer and bulk TiSe2/TiTe2.

A complete and up-to-date list of ACCEPT publications can be found here

About

No description, website, or topics provided.

Resources

Stars

Watchers

Forks

Releases

No releases published

Packages

No packages published