Tidal interactions play an important role in the evolution and ultimate fate of compact white dwarf (WD) binaries. Not only do tides affect the pre-merger state (such as temperature and rotation rate) of the WDs, but they may also determine which systems merge and which undergo stable mass transfer. In this paper, we attempt to quantify the effects of rotation on tidal angular momentum transport in binary stars, with specific calculations applied to WD stellar models. We incorporate the effect of rotation using the traditional approximation, in which the dynamically excited gravity waves within the WDs are transformed into gravitoinertial Hough waves. The Coriolis force has only a minor effect on prograde gravity waves, and previous results...
We study the tidal excitation of gravity modes (g-modes) in compact white dwarf binary systems with ...
Although not nearly as numerous as binaries with two white dwarfs, eccentric neutron star-white dwar...
Context. Massive stars with solar metallicity lose important amounts of rotational angular momentum ...
Tidal interactions play an important role in the evolution and ultimate fate of compact white dwarf ...
Tidal interactions play an important role in the evolution and ultimate fate of compact white dwarf ...
In compact white dwarf (WD) binary systems (with periods ranging from minutes to hours), dynamical t...
Tidal dissipation in compact white dwarf (WD) binary systems significantly influences the physical c...
The recently discovered system J0651 is the tightest known detached white dwarf (WD) binary. Since i...
We calculate the tidal response of helium and carbon/oxygen (C/O) white dwarf (WD) binaries inspiral...
We study a non-dissipative hydrodynamical mechanism that can stabilize the spin of the accretor in a...
Compact binary white dwarfs (WDs) undergoing orbital decay due to gravitational radiation can experi...
A white dwarf (WD) captured into a high-eccentricity orbit around a massive black hole (MBH) may und...
Context. Tides are known to play an important role in binary evolution, leading in particu...
We study the flux variation in helium white dwarfs (WDs) induced by dynamical tides for a variety of...
We follow the evolution of compact binaries under the coupled effect of tides and stellar winds unti...
We study the tidal excitation of gravity modes (g-modes) in compact white dwarf binary systems with ...
Although not nearly as numerous as binaries with two white dwarfs, eccentric neutron star-white dwar...
Context. Massive stars with solar metallicity lose important amounts of rotational angular momentum ...
Tidal interactions play an important role in the evolution and ultimate fate of compact white dwarf ...
Tidal interactions play an important role in the evolution and ultimate fate of compact white dwarf ...
In compact white dwarf (WD) binary systems (with periods ranging from minutes to hours), dynamical t...
Tidal dissipation in compact white dwarf (WD) binary systems significantly influences the physical c...
The recently discovered system J0651 is the tightest known detached white dwarf (WD) binary. Since i...
We calculate the tidal response of helium and carbon/oxygen (C/O) white dwarf (WD) binaries inspiral...
We study a non-dissipative hydrodynamical mechanism that can stabilize the spin of the accretor in a...
Compact binary white dwarfs (WDs) undergoing orbital decay due to gravitational radiation can experi...
A white dwarf (WD) captured into a high-eccentricity orbit around a massive black hole (MBH) may und...
Context. Tides are known to play an important role in binary evolution, leading in particu...
We study the flux variation in helium white dwarfs (WDs) induced by dynamical tides for a variety of...
We follow the evolution of compact binaries under the coupled effect of tides and stellar winds unti...
We study the tidal excitation of gravity modes (g-modes) in compact white dwarf binary systems with ...
Although not nearly as numerous as binaries with two white dwarfs, eccentric neutron star-white dwar...
Context. Massive stars with solar metallicity lose important amounts of rotational angular momentum ...