Aims. By reevaluating a 13-month stretch of Ulysses SWICS H pickup ion measurements near 5 AU close to the ecliptic right after the previous solar minimum, this paper presents a determination of the neutral interstellar H density at the solar wind termination shock and implications for the density and ionization degree of hydrogen in the local interstellar cloud. Methods. The density of neutral interstellar hydrogen at the termination shock was determined from the local pickup ion production rate as obtained close to the cut-off in the distribution function at aphelion of Ulysses. As shown in an analytical treatment for the upwind axis and through kinetic modeling of the pickup ion production rate at the observer location, with vari...
We estimate the intensity of interstellar pickup protons accelerated to 50 keV at various locations ...
Hydrogen pick-up ions produced in the inner heliosphere are convected outwards with the solar wind a...
The heliosphere, the volume inflated by the solar wind, is impenetrable to inter-stellar plasma, exc...
Aims. By reevaluating a 13-month stretch of Ulysses SWICS H pickup ion measurements near 5 AU close ...
Context. The ionized solar wind interacts directly with the interstellar neutrals which flow into th...
Context. With the plethora of detailed results from heliospheric missions such as Ulysses and SOHO a...
It is generally accepted that the solar wind is significantly heated beyond ~10 AU by the turbulent ...
Pickup ions measured deep inside the heliosphere open a new way to determine the absolute atomic den...
Over the last 10 years, the experimental basis for the study of the local interstellar medium has b...
Neutral interstellar helium atoms penetrate into the solar system almost unaffected by gas–plasma ...
Interstellar pickup ions are dynamically important in the outer heliosphere where they mass‐load and...
The GAS-instrument onboard the space probe Ulysses is designed to measure the local angular distribu...
Because of its high ionization potential and weak interaction with hydrogen, neutral interstellar he...
Neutral hydrogen atoms that travel into the heliosphere from the local interstellar medium (LISM) ex...
Context. A recent analysis of IBEX measurements of the neutral interstellar He flux showed that the ...
We estimate the intensity of interstellar pickup protons accelerated to 50 keV at various locations ...
Hydrogen pick-up ions produced in the inner heliosphere are convected outwards with the solar wind a...
The heliosphere, the volume inflated by the solar wind, is impenetrable to inter-stellar plasma, exc...
Aims. By reevaluating a 13-month stretch of Ulysses SWICS H pickup ion measurements near 5 AU close ...
Context. The ionized solar wind interacts directly with the interstellar neutrals which flow into th...
Context. With the plethora of detailed results from heliospheric missions such as Ulysses and SOHO a...
It is generally accepted that the solar wind is significantly heated beyond ~10 AU by the turbulent ...
Pickup ions measured deep inside the heliosphere open a new way to determine the absolute atomic den...
Over the last 10 years, the experimental basis for the study of the local interstellar medium has b...
Neutral interstellar helium atoms penetrate into the solar system almost unaffected by gas–plasma ...
Interstellar pickup ions are dynamically important in the outer heliosphere where they mass‐load and...
The GAS-instrument onboard the space probe Ulysses is designed to measure the local angular distribu...
Because of its high ionization potential and weak interaction with hydrogen, neutral interstellar he...
Neutral hydrogen atoms that travel into the heliosphere from the local interstellar medium (LISM) ex...
Context. A recent analysis of IBEX measurements of the neutral interstellar He flux showed that the ...
We estimate the intensity of interstellar pickup protons accelerated to 50 keV at various locations ...
Hydrogen pick-up ions produced in the inner heliosphere are convected outwards with the solar wind a...
The heliosphere, the volume inflated by the solar wind, is impenetrable to inter-stellar plasma, exc...