Published January 10, 2024 | Version v1

Impact of disorder and phonons on the Hubbard bands of Mott insulators in strong electric fields

  • 1. ROR icon Graz University of Technology

Contributors

Project leader:

Researcher:

  • 1. ROR icon Graz University of Technology

Description

The data stored in this repository are a mixture of raw and post-processed ones.

They are sorted by 'figures', i.e. for the figures they have been used to create:

in particular, the resulting publication is available at https://doi.org/10.1103/PhysRevB.109.045119.

 

The files containing the Green's function ('Green.dat') and various self-energies (electron-phonon, electronic)

are stored (in columns) in the following way:

frequency   Re(X^{R})   Im(X^{R})   Re(X^{K})   Im(X^{K})

and contain only the time-averaged component (l=0) of the Wigner-represented object (X, in this case).

 

To obtain the Floquet matrix to initialise the code it will be sufficient to write a script that

shifts the 00-entry stored in this files to recreate the diagonal matrix elements of the full matrix.

In the case of a dc field, in fact, the matrices are diagonal by construction (it can be analytically

shown for the local Green's function (gauge invariant one) and the self-energy follows due to the

DMFT approximation.

 

The data contained in "Par_vec.dat" are the fitting parameters needed for initialise the AMEA solver.

This research was funded in part by the Austrian Science Fund (FWF) [Grant DOI:10.55776/P33165]

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Additional details

Related works

Is source of
Dataset: 10.1103/PhysRevB.109.045119 (DOI)

Funding

FWF Austrian Science Fund
Mott insulators out of equilibrium: phonons and screening 10.55776/P33165

Dates

Created
2026-07-19

References

  • Phys. Rev. B 109, 045119