Proximity-induced flat bands and topological properties in a decorated diamond chain
K Shivanand Thakur, Vihodi Theuno, Amrita Mukherjee, and Biplab Pal

TL;DR
This paper introduces a method to generate and control multiple flat bands in a decorated diamond chain through strain-induced proximity effects, revealing tunable topological properties and robustness against disorder.
Contribution
It presents a novel scheme to manipulate flat bands in a decorated diamond chain using strain-induced proximity effects, enabling systematic control and topological classification.
Findings
Multiple flat bands can be generated and controlled via strain-induced proximity effects.
Flat bands are robust against small random onsite disorder.
Topological properties are characterized by winding numbers and edge states.
Abstract
In the present study, we propose a unique scheme to generate and control multiple flat bands in a decorated diamond chain by using a strain-induced proximity effect between the diagonal sites of each diamond plaquette. This is in complete contrast to the conventional diamond chain, in which the interplay between the lattice topology and an external magnetic flux leads to an extreme localization of the single-particle states, producing the flat bands in the energy spectrum. Such a strain-induced proximity effect will enable us to systematically control one of the diagonal hoppings in the decorated diamond chain, which will lead to the formation of both gapless and gapped flat bands in the energy spectrum. These gapless or gapped flat bands have been corroborated by the computation of the compact localized states amplitude distribution as well as the density of states of the system using…
Peer Reviews
No public reviews on file for this paper yet. If you reviewed it on a platform where reviews are public (OpenReview, ICLR, NeurIPS, ICML), you can paste yours below so the community can read it here.
Videos
No videos yet. Explain this paper in a talk, walkthrough, or lecture? Add one.
Taxonomy
TopicsAdvanced Fiber Optic Sensors · Advanced Numerical Analysis Techniques
