2020
DOI: 10.1103/physrevresearch.2.013116
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Electrical confinement in a spectrum of two-dimensional Dirac materials with classically integrable, mixed, and chaotic dynamics

Abstract: An emergent class of two-dimensional Dirac materials is α-T 3 lattices that can be realized by adding an atom at the center of each unit cell of a lattice with T 3 symmetry. The interaction strength α between this atom and any of its nearest neighbors is a parameter that can be continuously tuned between zero and one to generate a spectrum of materials. We investigate the fundamentally important and practically relevant issue of quasiparticle confinement for the entire spectrum of α-T 3 materials. Except for t… Show more

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Cited by 6 publications
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“…In recent research in the field of quantum dots, such states are in attention [40]. Existence of such states is attributed to the confining potential; in fact, the efficacy of confinement is determined by such states [41]. For two-electron ions, the existence of quasi-bound states was theoretically predicted by Bhattacharyya et al [42] in presence of strongly coupled plasma environment.…”
Section: Resultsmentioning
confidence: 99%
“…In recent research in the field of quantum dots, such states are in attention [40]. Existence of such states is attributed to the confining potential; in fact, the efficacy of confinement is determined by such states [41]. For two-electron ions, the existence of quasi-bound states was theoretically predicted by Bhattacharyya et al [42] in presence of strongly coupled plasma environment.…”
Section: Resultsmentioning
confidence: 99%