In materials with strong electron-phonon (e-ph) interactions, charge carriers can distort the surrounding lattice and become trapped, forming self-localized (small) polarons. We recently developed an ab initio approach based on canonical transformations to efficiently compute the formation and energetics of small polarons[1]. A different approach based on a Landau-Pekar energy functional has been proposed in the recent literature [2,3]. In this work, we analyze and compare these two methods in detail. We show that the small polaron energy is identical in the two formalisms when using the same polaron wave function. We also show that our canonical transformation formalism can predict polaron band structures and can properly treat zero- and f...
The electronic structure of condensed matter can be significantly affected by the electron-phonon in...
We perform the exact diagonalization of two, four, and six vibrating molecules strongly coupled with...
We conduct a detailed investigation of the polaron self-interaction (pSI) error in standard approxim...
Electronic states in a crystal can localize due to strong electron-phonon (e-ph) interactions, formi...
The polaron is a quasiparticle formed by collectively dressing an electron with a phonon cloud. It e...
We develop a theoretical and computational framework to study polarons in semiconductors and insulat...
We present a density functional theory (DFT) based supercell approach for modeling small polarons wi...
We develop a formalism and a computational method to study polarons in insulators and semiconductors...
We show that the conclusion on the breakdown of the standard small polaron theory made recently by E...
In this paper we revisit from a contemporary perspective a classic problem of polaron theory followi...
In this article we revisit from a contemporary perspective a classic problem of polaron theory in on...
We discuss a powerful algorithm for calculating static and dynamic properties of electron– phonon co...
In this paper we revisit from a contemporary perspective a classic problem of polaron theory in one ...
The aim of this thesis is to introduce the polaron concept and to perform a DFT numerical calculatio...
We extend the Feynman variational approach to the polaron problem \cite{Feynman1955} to the Holstein...
The electronic structure of condensed matter can be significantly affected by the electron-phonon in...
We perform the exact diagonalization of two, four, and six vibrating molecules strongly coupled with...
We conduct a detailed investigation of the polaron self-interaction (pSI) error in standard approxim...
Electronic states in a crystal can localize due to strong electron-phonon (e-ph) interactions, formi...
The polaron is a quasiparticle formed by collectively dressing an electron with a phonon cloud. It e...
We develop a theoretical and computational framework to study polarons in semiconductors and insulat...
We present a density functional theory (DFT) based supercell approach for modeling small polarons wi...
We develop a formalism and a computational method to study polarons in insulators and semiconductors...
We show that the conclusion on the breakdown of the standard small polaron theory made recently by E...
In this paper we revisit from a contemporary perspective a classic problem of polaron theory followi...
In this article we revisit from a contemporary perspective a classic problem of polaron theory in on...
We discuss a powerful algorithm for calculating static and dynamic properties of electron– phonon co...
In this paper we revisit from a contemporary perspective a classic problem of polaron theory in one ...
The aim of this thesis is to introduce the polaron concept and to perform a DFT numerical calculatio...
We extend the Feynman variational approach to the polaron problem \cite{Feynman1955} to the Holstein...
The electronic structure of condensed matter can be significantly affected by the electron-phonon in...
We perform the exact diagonalization of two, four, and six vibrating molecules strongly coupled with...
We conduct a detailed investigation of the polaron self-interaction (pSI) error in standard approxim...