4.7 Article

Confinement-driven spatial variations in the cosmic-ray flux

Journal

ASTROPHYSICAL JOURNAL
Volume 624, Issue 2, Pages L97-100

Publisher

IOP PUBLISHING LTD
DOI: 10.1086/430598

Keywords

ISM : kinematics and dynamics

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Low-energy cosmic rays (CRs) are confined by self-generated MHD waves in the mostly neutral interstellar medium. We show that the CR transport equation can be expressed as a continuity equation for the CR number density involving an effective convection velocity. Assuming a balance between wave growth and ion-neutral damping, this equation gives a steady state condition n(cr) proportional to n(t)(1/2) up to a critical density for free streaming. This relation naturally accounts for the heretofore unexplained difference in CR ionization rates derived for dense diffuse clouds (McCall et al.) and dark clouds, and predicts large spatial variations in the CR heating rate and pressure.

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