Charge pumps, boundary modes, and the necessity of unnecessary criticality
Abstract:
We link the presence of 鈥渦nnecessary鈥 quantum critical surfaces within a single gapped phase of matter to the nontrivial topology of of gapped Hamiltonians that encircle the critical surface. We study a specific set of one-dimensional spin models where each such family forms a one-parameter loop in a two-dimensional phase diagram. Foliating the noncritical region by such loops identifies 鈥渞adial鈥 and 鈥渁ngular鈥 coordinates in the phase diagram that respectively parametrize different families and different members of a single family. We show that each one-parameter family is a generalized Thouless charge pump, all with the same topological index, and hence the gapped phase undergoes one or more nontrivial boundary phase transitions as we vary the angular coordinate in a loop through members of one family. Tuning the radial coordinate generates loci of boundary critical points that terminate at the end points of the bulk unnecessary critical line within the gapped phase. We discuss broader implications of our results and possible extensions to higher dimensions.Mean-field modeling of moir茅 materials: a user's guide with selected applications to twisted bilayer graphene
Abstract:
We review the theoretical modeling of moir茅 materials, focusing on various aspects of magic-angle twisted bilayer graphene (MA-TBG) viewed through the lens of Hartree鈥揊ock mean-field theory. We first provide an elementary introduction to the continuum modeling of moir茅 bandstructures, and explain how interactions are incorporated to study correlated states. We then discuss how to implement mean-field simulations of ground state structure and collective excitations in this setting. With this background established, we rationalize the power of mean-field approximations in MA-TBG, by discussing the idealized 鈥榗hiral-flat鈥 strong-coupling limit, in which ground states at electron densities commensurate with the moir茅 superlattice are聽exactly聽captured by mean-field聽补苍蝉盲迟锄别. We then illustrate the phenomenological shortcomings of this limit, leading us naturally into a discussion of the intermediate-coupling incommensurate Kekul茅 spiral (IKS) order and its origins in ever-present heterostrain. IKS and its placement within an expanded Hartree鈥揊ock manifold form our first 鈥榗ase study鈥. Our second case study involves time-dependence, and focuses on the collective modes of various broken-symmetry insulators in MA-TBG. As a third and final case study, we return to the strong-coupling picture, which can be stabilized by aligning MA-TBG to an hBN substrate. In this limit, we show how mean field theory can be adapted to the translationally non-invariant setting in order to quantitatively study the energetics of domain walls in orbital Chern insulating states. We close with a discussion of extensions and further applications. Used either as a standalone reference or alongside the accompanying open-source code, this review should enable readers with a basic knowledge of band theory and many-body physics to systematically build and analyze detailed models of generic moir茅 systems.