output
20022025
most citedGravitational Waves and Gamma-rays from a Binary Neutron Star Merger: GW170817 and GRB 170817A

3.6k citations

Showing 2015Show all

32 papers · 1 filter

astro-ph.HE20152 cited

On the Possibility of Improving the Orbits of Satellites Based on Observations of Isolated X-ray Pulsars

M. G. Revnivtsev, O. E. Gadzhily, A. A. Lutovinov +4

At present, there is a great worldwide interest in the development of technologies that allow information about the X-ray emission from pulsating cosmic sources to be used to obtai…

astro-ph.SR20152 cited

Standard 1D solar atmosphere as initial condition for MHD simulations and switch-on effects

Philippe-A. Bourdin

Many applications in Solar physics need a 1D atmospheric model as initial condition or as reference for inversions of observational data. The VAL atmospheric models are based on ob…

astro-ph.EP201552 cited

Extreme hydrodynamic atmospheric loss near the critical thermal escape regime

N. V. Erkaev, H. Lammer, P. Odert +2

By considering martian-like planetary embryos inside the habitable zone of solar-like stars we study the behavior of the hydrodynamic atmospheric escape of hydrogen for small value…

astro-ph.EP2015175 cited

Outgassing History and Escape of the Martian Atmosphere and Water Inventory

H. Lammer, E. Chassefière, Ö. Karatekin +11

The evolution and escape of the martian atmosphere and the planet's water inventory can be separated into an early and late evolutionary epoch. The first epoch started from the pla…

astro-ph.EP201527 cited

Origin and Stability of Exomoon Atmospheres - Implications for Habitability

H. Lammer, S. -C. Schiefer, I. Juvan +7

We study the origin and escape of catastrophically outgassed volatiles (HO, CO) from exomoons with Earth-like densities and masses of , and $…

astro-ph.SR201537 cited

Short-period stellar activity cycles with Kepler photometry

Oleksiy V. Arkhypov, Maxim L. Khodachenko, Helmut Lammer +3

We study the short-periodic component of stellar activity with a cycle periods Pcyc up to 1000 days using the Kepler mission photometry of fast-rotating (rotational periods from 1…