Dynamics of Majorana zero modes across hybrid Kitaev chain

Fuente: arXiv
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Main Authors: Kumar, Rajiv, Shukla, Rohit Kumar, Chotorlishvili, Levan, Mishra, Sunil Kumar
Format: Preprint
Published: 2025
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_version_ 1866915693179437056
author Kumar, Rajiv
Shukla, Rohit Kumar
Chotorlishvili, Levan
Mishra, Sunil Kumar
author_facet Kumar, Rajiv
Shukla, Rohit Kumar
Chotorlishvili, Levan
Mishra, Sunil Kumar
contents The Kitaev chain has been extensively explored in the context of uniform couplings, with studies focusing either on purely nearest-neighbor interactions or on systems dominated by long-range superconducting pairing. Building on these investigations, we introduce a hybrid Kitaev chain in which the lattice is partitioned into two segments: the left segment comprises nearest-neighbor couplings, while the right segment incorporates long-range pairing. To probe the role of the interface, we study two scenarios: a decoupled (suppressed hopping) case, where the segments are isolated, and a coupled case, where they are connected via interface hopping that enables tunneling. Using this setup, we investigate the behavior of Majorana zero modes at the interface between the two segments, finding that in the decoupled case, Majorana zero modes remain sharply localized at the left segment chain edges while massive Dirac modes remain in right segment chain edges, with their energies and localization strongly dependent on the long-range pairing exponent. Introducing a finite interface coupling enables transfer of Majorana zero modes from the edges of the left segment to those of the right segment of the chain. We characterize this dynamics by the fidelity of state transfer, dynamical rotation, and inverse participation ratio. We show the signature of Majorana zero mode transfer across the interface by the spatiotemporal profile of the probability distribution of the time evolved state.
format Preprint
id arxiv_https___arxiv_org_abs_2509_26134
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Dynamics of Majorana zero modes across hybrid Kitaev chain
Kumar, Rajiv
Shukla, Rohit Kumar
Chotorlishvili, Levan
Mishra, Sunil Kumar
Quantum Physics
The Kitaev chain has been extensively explored in the context of uniform couplings, with studies focusing either on purely nearest-neighbor interactions or on systems dominated by long-range superconducting pairing. Building on these investigations, we introduce a hybrid Kitaev chain in which the lattice is partitioned into two segments: the left segment comprises nearest-neighbor couplings, while the right segment incorporates long-range pairing. To probe the role of the interface, we study two scenarios: a decoupled (suppressed hopping) case, where the segments are isolated, and a coupled case, where they are connected via interface hopping that enables tunneling. Using this setup, we investigate the behavior of Majorana zero modes at the interface between the two segments, finding that in the decoupled case, Majorana zero modes remain sharply localized at the left segment chain edges while massive Dirac modes remain in right segment chain edges, with their energies and localization strongly dependent on the long-range pairing exponent. Introducing a finite interface coupling enables transfer of Majorana zero modes from the edges of the left segment to those of the right segment of the chain. We characterize this dynamics by the fidelity of state transfer, dynamical rotation, and inverse participation ratio. We show the signature of Majorana zero mode transfer across the interface by the spatiotemporal profile of the probability distribution of the time evolved state.
title Dynamics of Majorana zero modes across hybrid Kitaev chain
topic Quantum Physics
url https://arxiv.org/abs/2509.26134