Patel, Aavishkar A. ; Sharma, Shraddha ; Dutta, Amit (2013) Quench dynamics of edge states in 2-D topological insulator ribbons The European Physical Journal B, 86 (9). ISSN 1434-6028
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Official URL: http://doi.org/10.1140/epjb/e2013-40657-2
Related URL: http://dx.doi.org/10.1140/epjb/e2013-40657-2
Abstract
We study the dynamics of edge states of the two dimensional BHZ Hamiltonian in a ribbon geometry following a sudden quench to the quantum critical point separating the topological insulator phase from the trivial insulator phase. The effective edge state Hamiltonian is a collection of decoupled qubit-like two-level systems which get coupled to bulk states following the quench. We notice a pronounced collapse and revival of the Loschmidt echo for low-energy edge states illustrating the oscillation of the state between the two edges. We also observe a similar collapse and revival in the spin Hall current carried by these edge states, leading to a persistence of its time-averaged value.
Item Type: | Article |
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Source: | Copyright of this article belongs to Springer Nature. |
Keywords: | Mesoscopic and Nanoscale Systems. |
ID Code: | 117279 |
Deposited On: | 16 Apr 2021 05:54 |
Last Modified: | 16 Apr 2021 05:54 |
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