We investigate the non-Markovian features of the Adapted Caldeira–Leggett model, a computationally efficient framework recently proposed to capture the essential physics of the standard Caldeira–Leggett model. While this effective model has been previously validated for decoherence and einselection, its ability to reproduce memory effects remains to be explored. By exploiting the model’s capability to explicitly track both system and environment degrees of freedom, we provide a detailed characterization of non-Markovianity through the lens of information backflow. We evaluate the buildup of system-environment correlations and the corresponding modifications of the environmental state, assessing a quantitative upper bound for the revival of distinguishability in the reduced dynamics. Our results, obtained by comparing different distinguishability quantifiers such as trace distance and the square root of the Jensen–Shannon divergence, show that while correlations are primarily sensitive to coupling strength, environmental state changes are more heavily influenced by temperature. Our analysis substantiates the physical interpretation of the distinguishability-based approach to non-Markovianity, and confirms this variant of the Caldeira–Leggett model as a reliable tool for exploring the microscopic origins of different fundamental phenomena in quantum mechanics.

Non-Markovianity in the Adapted Caldeira–Leggett Model / L. Manara, A. Smirne, B. Vacchini. - In: INTERNATIONAL JOURNAL OF QUANTUM INFORMATION. - ISSN 0219-7499. - 24:03(2026 Apr), pp. 2640004.1-2640004.18. [10.1142/S0219749926400046]

Non-Markovianity in the Adapted Caldeira–Leggett Model

A. Smirne
Penultimo
;
B. Vacchini
Ultimo
2026

Abstract

We investigate the non-Markovian features of the Adapted Caldeira–Leggett model, a computationally efficient framework recently proposed to capture the essential physics of the standard Caldeira–Leggett model. While this effective model has been previously validated for decoherence and einselection, its ability to reproduce memory effects remains to be explored. By exploiting the model’s capability to explicitly track both system and environment degrees of freedom, we provide a detailed characterization of non-Markovianity through the lens of information backflow. We evaluate the buildup of system-environment correlations and the corresponding modifications of the environmental state, assessing a quantitative upper bound for the revival of distinguishability in the reduced dynamics. Our results, obtained by comparing different distinguishability quantifiers such as trace distance and the square root of the Jensen–Shannon divergence, show that while correlations are primarily sensitive to coupling strength, environmental state changes are more heavily influenced by temperature. Our analysis substantiates the physical interpretation of the distinguishability-based approach to non-Markovianity, and confirms this variant of the Caldeira–Leggett model as a reliable tool for exploring the microscopic origins of different fundamental phenomena in quantum mechanics.
No
English
Caldeira–Leggett model; non-Markovian dynamics; Open quantum systems;
Settore PHYS-04/A - Fisica teorica della materia, modelli, metodi matematici e applicazioni
Articolo
Esperti anonimi
Pubblicazione scientifica
   Quantum Reservoir Computing (QuReCo)
   QuReCo
   MINISTERO DELL'UNIVERSITA' E DELLA RICERCA
   2022FEXLYB_001

   Open systems strategies for quantum synchronization enforcing (QuSynKrono)
   QuSynKrono
   UNIVERSITA' DEGLI STUDI DI PAVIA
apr-2026
28-apr-2026
World Scientific Connect
24
03
2640004
1
18
18
Pubblicato
Periodico con rilevanza internazionale
This article is part of the issue: Special Issue: Quantum 2025 / Guest Editors: M. Genovese, M. D’Angelo, P. Olivero and F. Piacentini
scopus
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info:eu-repo/semantics/article
Non-Markovianity in the Adapted Caldeira–Leggett Model / L. Manara, A. Smirne, B. Vacchini. - In: INTERNATIONAL JOURNAL OF QUANTUM INFORMATION. - ISSN 0219-7499. - 24:03(2026 Apr), pp. 2640004.1-2640004.18. [10.1142/S0219749926400046]
mixed
Prodotti della ricerca::01 - Articolo su periodico
3
262
Article (author)
Periodico con Impact Factor
L. Manara, A. Smirne, B. Vacchini
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/1246736
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