A New Estimate of the Local Interstellar Energy Density and Ionization Rate of Galactic Cosmic Cosmic Rays

@article{Webber1998ANE,
  title={A New Estimate of the Local Interstellar Energy Density and Ionization Rate of Galactic Cosmic Cosmic Rays},
  author={W. R. Webber},
  journal={The Astrophysical Journal},
  year={1998},
  volume={506},
  pages={329 - 334}
}
  • W. Webber
  • Published 10 October 1998
  • Physics
  • The Astrophysical Journal
Using data from the Voyager and Pioneer spacecraft at distances up to 60 AU from the Sun to help define the effects of solar modulation, we have made a new estimate of the local interstellar cosmic-ray spectra and the associated energy density and ionization rate. The energy density, including the low-energy electron contribution, is ~1.80 eV cm-3, equivalent energetically to that in a 7 μG magnetic field. The ionization rate from this same cosmic-ray population, including a significant… 

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References

SHOWING 1-10 OF 20 REFERENCES

The cosmic radiation in the heliosphere at successive solar minima

Comparative cosmic ray studies at the time of successive solar minima are of special importance in establishing the relative role of large-scale drift effects in the modulation process and in

A new determination of the local interstellar electron spectrum from the radio background.

Cosmic-ray electrons are believed to generate the observed galactic radio-frequency back-ground. Previous attempts in the literature to reconcile quantitatively the measured radio-frequency intensity

Distance to the solar wind termination shock and the source flux of anomalous cosmic rays during 1986‐1988

We use observations of the intensity of anomalous cosmic ray helium and oxygen in the outer heliosphere near the last solar minimum period, in conjunction with solar observations of the tilt of the

Voyager Measurements of the Mass Composition of Cosmic-Ray Ne, Mg, Si and S Nuclei

We report new measurements of the mass composition of cosmic-ray Ne, Mg, Si, and S nuclei made on the Voyager spacecraft. These measurements have ~4 times the statistical accuracy of previously

Cosmic Ray Electrons and Positrons — a Review of Current Measurements and Some Implications

We review recent measurements of cosmic ray electrons and positrons. In contrast to the earlier situation there now appears to be good agreement between different measurements of the electron

Anisotropic Broad Nuclear Gamma-Ray Lines: Application to the COMPTEL Observations of Orion

We investigated in detail the shape of the broad nuclear gamma-ray line emission resulting from accelerated C, N, and O interacting with ambient H and He in an attempt to fit the recent COMPTEL

Interstellar absorption lines toward NGC 2264 and AFGL 2591 - Abundances of H2, H3(+), and CO

Interstellar absorption-line spectroscopy of NGC 2264 is reported which shows that the CO molecule has a column density of 5 x 10 to the 18th/sq cm and a rotational excitation temperature of 28 K. A

Solar wind conditions in the outer heliosphere and the distance to the termination shock

The Plasma Science experiment on the Voyager 2 spacecraft has measured to date the properties of solar wind protons from 1 to 40.4 AU. We use these observations to discuss the probable location and

An interpretation of the observed oxygen and nitrogen enhancements in low energy cosmic rays.

The possibility is suggested that the enhancement of cosmic-ray oxygen and nitrogen observed at about 10 MeV per nucleon could result from neutral interstellar particles that are swept into the solar