Decoherence dynamics in a polaron system with collective dephasing
Abstract
Within quantum information frameworks, managing decoherence stands as a pivotal task. The present work delves into decoherence dynamics of a dressed qubit, represented by a spinless fermion hopping between two lattice sites that are strongly coupled to a collective bosonic bath. To simplify calculations under strong coupling, we adopt the Lang-Firsov transformation, effectively minimizing system-bath interactions. Within the polaron perspective using Ohmic bath spectral density with a Gaussian cutoff, we identify a fundamental timescale (equivalently a length scale ), dictating coherence decay. Utilizing a quantum master equation in the energy eigen basis while maintaining fixed particle number, we demonstrate that coherence persists for small values but diminishes for larger ones. Additionally, we explore the utilization of -pulses to manipulate decoherence within the system.
Cite
@article{arxiv.2501.00355,
title = {Decoherence dynamics in a polaron system with collective dephasing},
author = {Saima Bashir and Muzaffar Qadir Lone and Prince A Ganai},
journal= {arXiv preprint arXiv:2501.00355},
year = {2025}
}
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