Papers
Topics
Authors
Recent
Gemini 2.5 Flash
Gemini 2.5 Flash
157 tokens/sec
GPT-4o
8 tokens/sec
Gemini 2.5 Pro Pro
46 tokens/sec
o3 Pro
4 tokens/sec
GPT-4.1 Pro
38 tokens/sec
DeepSeek R1 via Azure Pro
28 tokens/sec
2000 character limit reached

Corner and Edge States in Topological Sierpinski Carpet Systems (2403.13774v3)

Published 20 Mar 2024 in cond-mat.mes-hall and cond-mat.other

Abstract: Fractal lattices, with their self-similar and intricate structures, offer potential platforms for engineering physical properties on the nanoscale and also for realizing and manipulating high order topological insulator states in novel ways. Here we present a theoretical study on localized corner and edge states, emerging from topological phases in Sierpinski Carpet within a $\pi$-flux regime. A topological phase diagram is presented correlating the quadrupole moment with different hopping parameters. Particular localized states are identified following spatial signatures in distinct fractal generations. The specific geometry and scaling properties of the fractal systems can guide the supported topological states types and their associated functionalities. A conductive device is proposed by coupling identical Sierpinski Carpet units providing transport response through projected edge states which carry on the details of the system's topology. Our findings suggest that fractal lattices may also work as alternative routes to tune energy channels in different devices.

Definition Search Book Streamline Icon: https://streamlinehq.com
References (11)
  1. F. D. M. Haldane, Phys. Rev. Lett. 61, 2015 (1988).
  2. C. L. Kane and E. J. Mele, Phys. Rev. Lett. 95, 146802 (2005).
  3. R. D. King-Smith and D. Vanderbilt, Phys. Rev. B 47, 1651 (1993).
  4. D. Vanderbilt and R. D. King-Smith, Phys. Rev. B 48, 4442 (1993).
  5. W. A. Benalcazar and A. Cerjan, Phys. Rev. B 101, 161116 (2020).
  6. N. Lazarides and G. P. Tsironis, Sci. Rep. 9, 4904 (2019).
  7. L. L. Lage and A. Latgé, Phys. Chem. Chem. Phys. 24, 19576 (2022).
  8. L. L. Lage and A. Latgé, Frontier in Carbon 3, 01 (2023).
  9. Y.-L. Han and Z.-H. Qiao, Frontiers of Phys. 14, 63603 (2019).
  10. C.-A. Li and S.-S. Wu, Phys. Rev. B 105, 045417 (2022).
  11. S. Datta, Electronic Transport in Mesoscopic Systems, cambridge university press ed. (New York, 1995).
Citations (1)

Summary

We haven't generated a summary for this paper yet.