Interplanetary magnetic correlation and low-frequency spectrum over many solar rotations

Fuente: arXiv
Guardado en:
Detalles Bibliográficos
Autores principales: Wang, Jiaming, Pecora, Francesco, Chhiber, Rohit, Roy, Sohom, Matthaeus, William H.
Formato: Preprint
Publicado: 2025
Materias:
Acceso en línea:
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
_version_ 1866912801191100416
author Wang, Jiaming
Pecora, Francesco
Chhiber, Rohit
Roy, Sohom
Matthaeus, William H.
author_facet Wang, Jiaming
Pecora, Francesco
Chhiber, Rohit
Roy, Sohom
Matthaeus, William H.
contents Fluctuations and structure across a wide range of spatial and temporal scales are frequently studied in the solar wind. The properties of the low-frequency fluctuations are of relevance to turbulent energy injection into the plasma and the transport of high-energy cosmic rays. Correlation analysis of decade-long intervals of interplanetary data permits study of fluctuations at time scales much longer than suitably defined correlation times, and therefore at frequencies well below those associated with the Kolmogorov inertial range of {\it in situ} turbulence. At the frequencies of interest, we study the familiar occurrence of the $1/f$ spectral signature. We also study point spectral features due to solar rotation and their relation with the $1/f$ signal. We report novel properties at timescales ranging from minutes up to years, using data selected by wind speed, phase of solar cycle, and cartesian components of the magnetic field. A surprising finding is that the power in solar rotation harmonics is consistent with an extension of the $1/f$ spectrum, down to frequencies as low as around $\unit[5 \times 10^{-7}]{Hz}$. The presence of a broadband $1/f$ spectrum across different wind types supports the interpretation that $1/f$ signals may be related to or even originate from the solar dynamo.
format Preprint
id arxiv_https___arxiv_org_abs_2507_16053
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Interplanetary magnetic correlation and low-frequency spectrum over many solar rotations
Wang, Jiaming
Pecora, Francesco
Chhiber, Rohit
Roy, Sohom
Matthaeus, William H.
Solar and Stellar Astrophysics
Space Physics
Fluctuations and structure across a wide range of spatial and temporal scales are frequently studied in the solar wind. The properties of the low-frequency fluctuations are of relevance to turbulent energy injection into the plasma and the transport of high-energy cosmic rays. Correlation analysis of decade-long intervals of interplanetary data permits study of fluctuations at time scales much longer than suitably defined correlation times, and therefore at frequencies well below those associated with the Kolmogorov inertial range of {\it in situ} turbulence. At the frequencies of interest, we study the familiar occurrence of the $1/f$ spectral signature. We also study point spectral features due to solar rotation and their relation with the $1/f$ signal. We report novel properties at timescales ranging from minutes up to years, using data selected by wind speed, phase of solar cycle, and cartesian components of the magnetic field. A surprising finding is that the power in solar rotation harmonics is consistent with an extension of the $1/f$ spectrum, down to frequencies as low as around $\unit[5 \times 10^{-7}]{Hz}$. The presence of a broadband $1/f$ spectrum across different wind types supports the interpretation that $1/f$ signals may be related to or even originate from the solar dynamo.
title Interplanetary magnetic correlation and low-frequency spectrum over many solar rotations
topic Solar and Stellar Astrophysics
Space Physics
url https://arxiv.org/abs/2507.16053