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April 4, 2026Communications Physics0 citationsOpen Access

Rhombohedral graphite junctions as a platform for continuous tuning between topologically trivial and non-trivial electronic phases

LSLuke SonejiSCS. CrampinMMM. Mucha-Kruczynski

Key Points

  • This research aims to explore how to manipulate topological properties of electronic states in rhombohedral graphite.
  • Proposed junctions between rhombohedral graphite crystals for phase tuning.
  • Used sliding mechanism to align crystals and modify atomic stacking.
  • Applied analogy with the Su-Schrieffer-Heeger model to relate stacking symmetry to topological states.
  • Identified smooth transitions between topologically trivial and non-trivial phases.
  • Revealed the emergence of topological junction states based on crystal alignment.
  • Demonstrated that manipulation of lattice symmetry can protect quantum states against disorder.

Abstract

Abstract Manipulating the topological properties of quantum states can provide a way to protect them against disorder. However, typically, changing the topology of electronic states in a crystalline material is challenging because their nature is underpinned by chemical composition and lattice symmetry that are difficult to modify. We propose junctions between rhombohedral graphite crystals as a platform that enables smooth transition between topologically trivial and non-trivial regimes distinguished by the absence or presence of topological junction states. By invoking an analogy with the Su-Schrieffer-Heeger model, the appearance of topological states is related to the symmetry of the atomic stacking at the interface between the crystals. The possibility to explore both the topological and non-topological phases is provided by sliding the crystals with respect to each other.

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Cite This Study

Soneji et al. (2026) studied this question.

synapsesocial.com/papers/69d0aefd659487ece0fa4eb2https://doi.org/10.1038/s42005-026-02605-8
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