The lifetime of a planetary disc that orbits a white dwarf represents a crucial input parameter into evolutionary models of that system. Here we apply a purely analytical formalism to estimate lifetimes of the debris phase of these discs, before they are ground down into dust or are subject to sublimation from the white dwarf. We compute maximum lifetimes for three different types of white dwarf discs, formed from (i) radiative YORP break-up of exo-asteroids along the giant branch phases at 2–100 au, (ii) radiation-less spin-up disruption of these minor planets at ∼1.5−4.5R⊙, and (iii) tidal disruption of minor or major planets within about 1.3R⊙. We display these maximum lifetimes as a function of disc mass and extent, constituent planet...
White dwarfs which exhibit transit signatures of planetary debris and accreted planetary material pr...
High-metallicity pollution is common in white dwarf (WD) stars hosting remnant planetary systems. Ho...
Robust evidence of an ice giant planet shedding its atmosphere around the white dwarf WD J0914+1914 ...
Abstract The discovery of the intact minor planet embedded in the debris disc orbiting SDSS J1228+10...
A widely-held assumption is that each single white dwarf containing observable rocky debris requires...
Observational evidence of white dwarf planetary systems is dominated by the remains of exo-asteroids...
White dwarfs containing orbiting planetesimals or their debris represent crucial benchmarks by which...
Identifying planets around O-type and B-type stars is inherently difficult; the most massive known p...
Roughly 1000 white dwarfs are known to be polluted with planetary material, and the progenitors of t...
Over one quarter of white dwarfs contain observable metallic debris from the breakup of exo-asteroid...
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 ...
Our knowledge of white dwarf planetary systems predominately arises from the region within a few Sol...
The noteworthy four-planet HR 8799 system teeters on the brink of gravitational instability and cont...
Robust evidence of an ice giant planet shedding its atmosphere around the white dwarf WD J0914+1914 ...
White dwarfs which exhibit transit signatures of planetary debris and accreted planetary material pr...
High-metallicity pollution is common in white dwarf (WD) stars hosting remnant planetary systems. Ho...
Robust evidence of an ice giant planet shedding its atmosphere around the white dwarf WD J0914+1914 ...
Abstract The discovery of the intact minor planet embedded in the debris disc orbiting SDSS J1228+10...
A widely-held assumption is that each single white dwarf containing observable rocky debris requires...
Observational evidence of white dwarf planetary systems is dominated by the remains of exo-asteroids...
White dwarfs containing orbiting planetesimals or their debris represent crucial benchmarks by which...
Identifying planets around O-type and B-type stars is inherently difficult; the most massive known p...
Roughly 1000 white dwarfs are known to be polluted with planetary material, and the progenitors of t...
Over one quarter of white dwarfs contain observable metallic debris from the breakup of exo-asteroid...
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 ...
Our knowledge of white dwarf planetary systems predominately arises from the region within a few Sol...
The noteworthy four-planet HR 8799 system teeters on the brink of gravitational instability and cont...
Robust evidence of an ice giant planet shedding its atmosphere around the white dwarf WD J0914+1914 ...
White dwarfs which exhibit transit signatures of planetary debris and accreted planetary material pr...
High-metallicity pollution is common in white dwarf (WD) stars hosting remnant planetary systems. Ho...
Robust evidence of an ice giant planet shedding its atmosphere around the white dwarf WD J0914+1914 ...