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Titlebook: Magnetic Fields in Diffuse Media; Alexander Lazarian,Elisabete M. de Gouveia Dal Pin Book 2015 Springer-Verlag Berlin Heidelberg 2015 astr

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Future Observations of Cosmic Magnetic Fields with LOFAR, SKA and Its Precursorserstand their origin. Low-frequency radio synchrotron emission from the Milky Way, galaxies and galaxy clusters, observed with the new Low Frequency Array (LOFAR) and the planned Square Kilometre Array (SKA), traces low-energy cosmic ray electrons and allows us to map the structure of weak magnetic
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Magnetic Fields with the Atacama Large Millimeter/Submillimeter Arrayrt in Chile. Its unprecedented sensitivity at extremely high angular and spectral resolution in the (sub-)millimetre wavelength regime, allows for countless advances in astrophysics. One of the areas in which ALMA can make unique contributions, is in that of the study of astrophysical magnetic field
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Synchrotron Radiation and Faraday Rotationday rotation of the linearly polarized radiation is induced by intervening line-of-sight magnetic fields that are embedded in ionized plasmas. For decades these observational tools have been workhorses for utilizing radio telescopes to study magnetic fields inside and outside the Milky Way. In the m
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Interstellar Grain Alignment: Observational Statustentially provide a resource effective way to probe both the topology and strength of the magnetic-field. However, to do so with confidence, the physics and variability of the alignment mechanisms must be quantitatively understood. The last 15 years has seen major advancements in both the theoretica
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Kinetic Turbulenceng the development of a more comprehensive theory of kinetic turbulence. In particular, a kinetic approach is essential for the investigation of the physical mechanisms responsible for the dissipation of astrophysical turbulence and the resulting heating of the plasma. This chapter reviews the limit
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