White dwarfs which exhibit transit signatures of planetary debris and accreted planetary material provide exceptional opportunities to probe the material composition and dynamical structure of planetary systems. Although previous theoretical work investigating the role of minor body disruption around white dwarfs has focussed on spherical bodies, Solar System asteroids can be more accurately modelled as triaxial ellipsoids. Here we present an analytical framework to identify the type of disruption (tidal fragmentation, total sublimation or direct impact) experienced by triaxial asteroids approaching white dwarfs on extremely eccentric (e \sim 1) orbits. This framework is then used to identify the outcomes for simplified Main belt analogues ...
A widely-held assumption is that each single white dwarf containing observable rocky debris requires...
Abstract The discovery of the intact minor planet embedded in the debris disc orbiting SDSS J1228+10...
Metal pollution in white dwarf photospheres originates from the accretion of some combination of pla...
Our knowledge of white dwarf planetary systems predominately arises from the region within a few Sol...
We make use of a new hybrid method to simulate the long-term, multiple-orbit disc formation through ...
We make use of a new hybrid method to simulate the long-term, multiple-orbit disc formation through ...
White dwarfs containing orbiting planetesimals or their debris represent crucial benchmarks by which...
Post-main-sequence planetary science has been galvanised by the striking variability, depth and shap...
High-metallicity pollution is common in white dwarf (WD) stars hosting remnant planetary systems. Ho...
The lifetime of a planetary disc that orbits a white dwarf represents a crucial input parameter into...
Roughly 1000 white dwarfs are known to be polluted with planetary material, and the progenitors of t...
Being the first of its kind, the white dwarf WD 1145+017 exhibits a complex system of disintegrating...
Atmospheric heavy elements have been observed in more than a quarter of white dwarfs (WDs) at differ...
Understanding the fate of planetary systems through white dwarfs which accrete debris crucially reli...
Observational evidence of white dwarf planetary systems is dominated by the remains of exo-asteroids...
A widely-held assumption is that each single white dwarf containing observable rocky debris requires...
Abstract The discovery of the intact minor planet embedded in the debris disc orbiting SDSS J1228+10...
Metal pollution in white dwarf photospheres originates from the accretion of some combination of pla...
Our knowledge of white dwarf planetary systems predominately arises from the region within a few Sol...
We make use of a new hybrid method to simulate the long-term, multiple-orbit disc formation through ...
We make use of a new hybrid method to simulate the long-term, multiple-orbit disc formation through ...
White dwarfs containing orbiting planetesimals or their debris represent crucial benchmarks by which...
Post-main-sequence planetary science has been galvanised by the striking variability, depth and shap...
High-metallicity pollution is common in white dwarf (WD) stars hosting remnant planetary systems. Ho...
The lifetime of a planetary disc that orbits a white dwarf represents a crucial input parameter into...
Roughly 1000 white dwarfs are known to be polluted with planetary material, and the progenitors of t...
Being the first of its kind, the white dwarf WD 1145+017 exhibits a complex system of disintegrating...
Atmospheric heavy elements have been observed in more than a quarter of white dwarfs (WDs) at differ...
Understanding the fate of planetary systems through white dwarfs which accrete debris crucially reli...
Observational evidence of white dwarf planetary systems is dominated by the remains of exo-asteroids...
A widely-held assumption is that each single white dwarf containing observable rocky debris requires...
Abstract The discovery of the intact minor planet embedded in the debris disc orbiting SDSS J1228+10...
Metal pollution in white dwarf photospheres originates from the accretion of some combination of pla...