The origin of the 'local' 1/4 keV X-ray flux in both charge exchange and a hot bubble
arXiv:1407.7539 · doi:10.1038/nature13525
Abstract
The Solar neighborhood is the closest and most easily studied sample of the Galactic interstellar medium, an understanding of which is essential for models of star formation and galaxy evolution. Observations of an unexpectedly intense diffuse flux of easily-absorbed 1/4 keV X rays, coupled with the discovery that interstellar space within ~100 pc of the Sun is almost completely devoid of cool absorbing gas led to a picture of a "local cavity" filled with X-ray emitting hot gas dubbed the local hot bubble. This model was recently upset by suggestions that the emission could instead be produced readily within the solar system by heavy solar wind ions charge exchanging with neutral H and He in interplanetary space, potentially removing the major piece of evidence for the existence of million-degree gas within the Galactic disk. Here we report results showing that the total solar wind charge exchange contribution is 40% +/- 5% (stat) +/- 5% (sys) of the 1/4 keV flux in the Galactic plane. The fact that the measured flux is not dominated by charge exchange supports the notion of a million-degree hot bubble of order 100 pc extent surrounding the Sun.
9 pages, 6 figures, 1 table. The final version of the paper is available on Nature
References in corpus (2)
Cited by in corpus (24)
- Constraining the Milky Way's Hot Gas Halo with OVII and OVII Emission Lines
- The Structure of the Local Hot Bubble
- The Interaction of the Fermi Bubbles with the Milky Way's Hot Gas Halo
- Abundance and temperature of the outer hot circum-Galactic medium: The SRG/eROSITA view of the soft X-ray background in the eFEDS field
- The interface between the outer heliosphere and the inner lism: Morphology of the local interstellar cloud, its hydrogen hole, stromgren shells, and Fe accretion
- HaloSat -- A CubeSat to Study the Hot Galactic Halo
- SRG/eROSITA X-ray shadowing study of giant molecular clouds
- Numerical studies on the link between radioisotopic signatures on Earth and the formation of the Local Bubble. II. Advanced modeling of interstellar 26Al, 53Mn, 60Fe, and 244Pu influxes as traces of past supernovae in the solar neighborhood
- A three-dimensional map of the hot Local Bubble using diffuse interstellar bands
- Discovery of Soft X-ray Pulsations from PSR J1231-1411 using NICER
- Scientific Objectives of the Hot Universe Baryon Surveyor (HUBS) Mission
- Can the Local Bubble explain the radio background?
- Formation and evolution of the local interstellar environment: combined constraints from nucleosynthetic and X-ray data
- XMM-Newton Measurement of the Galactic Halo X-ray Emission using a Compact Shadowing Cloud
- The Origin of the Cluster of Local Interstellar Clouds
- Synthetic dust polarization emission maps at 353 GHz for an observer placed inside a Local Bubble-like cavity
- Excess Ultraviolet Emission at High Galactic Latitudes: A New Horizons View
- The nearby interstellar medium towards alpha Leo -- UV observations and modeling of a warm cloud within hot gas
- Interstellar Dust and Gas in the Heliosphere
- Charge exchange, from the sky to the laboratory: A method to determine state-selective cross-sections for improved modeling
- Point source contribution to the Diffuse X-ray Background below 1 keV and its effect on our understanding of the circum-galactic medium
- In Search of an Interface between Warm and Hot Gas within the Local Bubble
- Spatial Power Spectral Analysis of the Suzaku X-ray Background
- Determination of the Solar System contribution to the soft X-ray sky