Anomalous slow-down of the bound state dynamics in a non-locally coupled quantum circuit

Fuente: arXiv
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Main Authors: Paul, Biswajit, Mondal, Suman, Mishra, Tapan
Format: Preprint
Published: 2025
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author Paul, Biswajit
Mondal, Suman
Mishra, Tapan
author_facet Paul, Biswajit
Mondal, Suman
Mishra, Tapan
contents Additional hopping channels in a tight-binding lattice is known to introduce faster dynamics of a quantum mechanical particle. However, we show that in the case of a repulsively bound state, the dynamics becomes abnormally slow when next-nearest neighbor (NNN) hopping is allowed for the particles. We show that such slowing down occurs for some magic strength of the NNN hopping at which the bound state band exhibits a quasi-flatband feature. We reveal this anomalous dynamical behavior by analyzing the quench dynamics of two nearest neighbor (NN) spin excitations (magnons) on a ferromagnetic chain by allowing both NN and NNN couplings. By implementing digital quantum computing simulations on a NISQ device, we obtain such non-trivial signatures and complement the results with exact numerical calculations. Moreover, through perturbative arguments, we reveal that the slowing down is due to the destructive interference between different paths associated to the bound state dynamics.
format Preprint
id arxiv_https___arxiv_org_abs_2506_09818
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Anomalous slow-down of the bound state dynamics in a non-locally coupled quantum circuit
Paul, Biswajit
Mondal, Suman
Mishra, Tapan
Quantum Gases
Other Condensed Matter
Quantum Physics
Additional hopping channels in a tight-binding lattice is known to introduce faster dynamics of a quantum mechanical particle. However, we show that in the case of a repulsively bound state, the dynamics becomes abnormally slow when next-nearest neighbor (NNN) hopping is allowed for the particles. We show that such slowing down occurs for some magic strength of the NNN hopping at which the bound state band exhibits a quasi-flatband feature. We reveal this anomalous dynamical behavior by analyzing the quench dynamics of two nearest neighbor (NN) spin excitations (magnons) on a ferromagnetic chain by allowing both NN and NNN couplings. By implementing digital quantum computing simulations on a NISQ device, we obtain such non-trivial signatures and complement the results with exact numerical calculations. Moreover, through perturbative arguments, we reveal that the slowing down is due to the destructive interference between different paths associated to the bound state dynamics.
title Anomalous slow-down of the bound state dynamics in a non-locally coupled quantum circuit
topic Quantum Gases
Other Condensed Matter
Quantum Physics
url https://arxiv.org/abs/2506.09818