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Main Authors: Rochdi, Noureddine, Laamara, Rachid Ahl, Bennai, Mohamed
Format: Preprint
Published: 2025
Subjects:
Online Access:https://arxiv.org/abs/2502.19156
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author Rochdi, Noureddine
Laamara, Rachid Ahl
Bennai, Mohamed
author_facet Rochdi, Noureddine
Laamara, Rachid Ahl
Bennai, Mohamed
contents We study the quantum Rabi model (QRM) in the deep strong coupling (DSC) regime. To capture the full dynamics of the QRM in the DSC regime, we implemented single-qubit rotations combined with integrated digital steps and qubit-bosonic blocks. This approach leads to a paradigm known as digital analog quantum simulations (DAQSs). In this work, we review the encoding of QRM in the DSC regime through emerging paradigms of digital and analog techniques. Using DAQSs encoding, an efficient simulation can be performed on state-of-the-art circuit quantum electrodynamics platforms. Finally, we provide detailed information on the dynamics of the QRM in varity of parameter regions. We demonstrate the effectiveness of the DAQS paradigms in achieving prolonged coherent measurements during time evolution, even in the case of perturbative DSC regime dynamics. This proposal lays the groundwork for simulating complex many-body dynamics that involve bosonic modes.
format Preprint
id arxiv_https___arxiv_org_abs_2502_19156
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Digital-Analog quantum Rabi simulation in the Deep Strong Coupling Regime
Rochdi, Noureddine
Laamara, Rachid Ahl
Bennai, Mohamed
Quantum Physics
We study the quantum Rabi model (QRM) in the deep strong coupling (DSC) regime. To capture the full dynamics of the QRM in the DSC regime, we implemented single-qubit rotations combined with integrated digital steps and qubit-bosonic blocks. This approach leads to a paradigm known as digital analog quantum simulations (DAQSs). In this work, we review the encoding of QRM in the DSC regime through emerging paradigms of digital and analog techniques. Using DAQSs encoding, an efficient simulation can be performed on state-of-the-art circuit quantum electrodynamics platforms. Finally, we provide detailed information on the dynamics of the QRM in varity of parameter regions. We demonstrate the effectiveness of the DAQS paradigms in achieving prolonged coherent measurements during time evolution, even in the case of perturbative DSC regime dynamics. This proposal lays the groundwork for simulating complex many-body dynamics that involve bosonic modes.
title Digital-Analog quantum Rabi simulation in the Deep Strong Coupling Regime
topic Quantum Physics
url https://arxiv.org/abs/2502.19156