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Fr\"ohlich Polarons. Lecture course including detailed theoretical derivations -- 10th edition
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In the present course, an overview is presented of the fundamentals of continuum-polaron physics, which provide the basis of the analysis of polaron effects in ionic crystals and polar semiconductors. These Lecture Notes deal with "large", or "continuum", polarons, as described by the Fr\"ohlich Hamiltonian. The emphasis is on the polaron optical absorption, with detailed mathematical derivations.
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Cited by 3 Pith papers
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Delocalized Coupled-Cluster Theory for Polaron Structure and Dynamics
Delocalized coupled-cluster theory gives a scalable, systematically improvable variational description of polaron ground states, spectral functions, and optical conductivities from model Hamiltonians to ab initio materials.
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Polarons in two-dimensional polar materials: All-coupling variational theory
A Feynman path-integral variational theory is generalized to two-dimensional polar monolayers, yielding all-coupling polaron energies and masses controlled by one effective Fröhlich constant, αm.
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Polarons and Exciton-Polarons in Two-Dimensional Polar Materials
A macroscopic 2D theory parameterized by monolayer polarizabilities gives the LO phonon dispersion, the electron-phonon Hamiltonian, and polaron and exciton-polaron binding energies in polar monolayers.
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