Quantum $1/f^η$ Noise Induced Relaxation in the Spin-Boson Model

Fuente: arXiv
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Autores principales: Otterpohl, Florian, Nalbach, Peter, Paladino, Elisabetta, Falci, Giuseppe A., Thorwart, Michael
Formato: Preprint
Publicado: 2025
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author Otterpohl, Florian
Nalbach, Peter
Paladino, Elisabetta
Falci, Giuseppe A.
Thorwart, Michael
author_facet Otterpohl, Florian
Nalbach, Peter
Paladino, Elisabetta
Falci, Giuseppe A.
Thorwart, Michael
contents We extend the spin-boson model of open quantum systems to the regime of quantum $1/f^η$ noise characterized by negative exponents of its spectral distribution. Using the numerically exact time-evolving matrix product operator, we find the dynamic regime diagram, including pseudocoherent dynamics controlled by quantum $1/f^η$ noise. We determine the dephasing rate and find for it an empirical formula valid at zero temperature. The bath reorganization energy depends on the infrared bath cutoff frequency, revealing an increased sensitivity of the dephasing on the measurement time of an experiment. \ep{Our results apply to a qubit as an elementary building block of a quantum computer and pave the way towards a quantum treatment of low-frequency noise in more complex architectures.
format Preprint
id arxiv_https___arxiv_org_abs_2507_14329
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Quantum $1/f^η$ Noise Induced Relaxation in the Spin-Boson Model
Otterpohl, Florian
Nalbach, Peter
Paladino, Elisabetta
Falci, Giuseppe A.
Thorwart, Michael
Quantum Physics
We extend the spin-boson model of open quantum systems to the regime of quantum $1/f^η$ noise characterized by negative exponents of its spectral distribution. Using the numerically exact time-evolving matrix product operator, we find the dynamic regime diagram, including pseudocoherent dynamics controlled by quantum $1/f^η$ noise. We determine the dephasing rate and find for it an empirical formula valid at zero temperature. The bath reorganization energy depends on the infrared bath cutoff frequency, revealing an increased sensitivity of the dephasing on the measurement time of an experiment. \ep{Our results apply to a qubit as an elementary building block of a quantum computer and pave the way towards a quantum treatment of low-frequency noise in more complex architectures.
title Quantum $1/f^η$ Noise Induced Relaxation in the Spin-Boson Model
topic Quantum Physics
url https://arxiv.org/abs/2507.14329