Context. Milky Way dwarf satellites are unique objects that encode the early structure formation and therefore represent a window into the high redshift Universe. So far, their study has been conducted using electromagnetic waves only. The future Laser Interferometer Space Antenna (LISA) has the potential to reveal Milky Way satellites through gravitational waves emitted by double white dwarf (DWD) binaries. Aims. We investigate gravitational wave signals that will be detectable by LISA as a possible tool for the identification and characterisation of the Milky Way satellites. Methods. We used the binary population synthesis technique to model the population of DWDs in dwarf satellites and we assessed the impact on the number of LISA detect...
The upcoming LISA mission is the only experiment that will allow us to study the Milky Way’s structu...
White dwarf binaries with orbital periods below 1 h will be the most numerous sources for the space-...
White dwarf binaries with orbital periods below 1 h will be the most numerous sources for the space-...
Context. Milky Way dwarf satellites are unique objects that encode the early structure formation and...
Context. Milky Way dwarf satellites are unique objects that encode the early structure formation and...
International audienceABSTRACT White dwarf binaries with orbital periods below 1 h will be the most ...
International audienceWhite dwarf binaries with orbital periods below 1 h will be the most numerous ...
International audienceRealistic models of the Galactic double white dwarf (DWD) population are cruci...
International audienceRealistic models of the Galactic double white dwarf (DWD) population are cruci...
International audienceRealistic models of the Galactic double white dwarf (DWD) population are cruci...
International audienceRealistic models of the Galactic double white dwarf (DWD) population are cruci...
The upcoming LISA mission is the only experiment that will allow us to studythe Milky Way's structur...
Realistic models of the Galactic double white dwarf (DWD) population are crucial for testing and qua...
The upcoming LISA mission is the only experiment that will allow us to study the Milky Way's struct...
International audienceThe upcoming Laser Interferometer Space Antenna (LISA) mission offers the uniq...
The upcoming LISA mission is the only experiment that will allow us to study the Milky Way’s structu...
White dwarf binaries with orbital periods below 1 h will be the most numerous sources for the space-...
White dwarf binaries with orbital periods below 1 h will be the most numerous sources for the space-...
Context. Milky Way dwarf satellites are unique objects that encode the early structure formation and...
Context. Milky Way dwarf satellites are unique objects that encode the early structure formation and...
International audienceABSTRACT White dwarf binaries with orbital periods below 1 h will be the most ...
International audienceWhite dwarf binaries with orbital periods below 1 h will be the most numerous ...
International audienceRealistic models of the Galactic double white dwarf (DWD) population are cruci...
International audienceRealistic models of the Galactic double white dwarf (DWD) population are cruci...
International audienceRealistic models of the Galactic double white dwarf (DWD) population are cruci...
International audienceRealistic models of the Galactic double white dwarf (DWD) population are cruci...
The upcoming LISA mission is the only experiment that will allow us to studythe Milky Way's structur...
Realistic models of the Galactic double white dwarf (DWD) population are crucial for testing and qua...
The upcoming LISA mission is the only experiment that will allow us to study the Milky Way's struct...
International audienceThe upcoming Laser Interferometer Space Antenna (LISA) mission offers the uniq...
The upcoming LISA mission is the only experiment that will allow us to study the Milky Way’s structu...
White dwarf binaries with orbital periods below 1 h will be the most numerous sources for the space-...
White dwarf binaries with orbital periods below 1 h will be the most numerous sources for the space-...