During their most recent observing run, LIGO/Virgo reported the gravitational wave (GW) transient S191110af, a burst signal at a frequency of 1.78 kHz that lasted for 0.104 s. While this signal was later deemed non-astrophysical, genuine detections of uncertain origin will occur in the future. Here we study the potential for detecting GWs from neutron star fluid oscillations, which have mode frequency and duration matching those of S191110af and which can be used to constrain the equation of state of nuclear matter. Assuming that such transient oscillations can be excited to energies typical of a pulsar glitch, we use measured properties of known glitching pulsars to estimate the amplitude of GWs produced by such events. We find that cu...
Rotating, non-axisymmetric neutron stars are expected to emit continuous gravitational waves at a ne...
The physical mechanisms responsible for pulsar timing glitches are thought to excite quasinormal mod...
Continuous gravitational waves from neutron stars could provide an invaluable resource to learn abou...
t Glitches in pulsars are likely to trigger oscillation modes in the fluid interior of neutron stars...
We have used data from the third and fourth science runs of the laser interferometric gravitational ...
[eng] Gravitational waves (GWs) can offer a novel window into the structure and dynamics of neutron ...
Oscillating compact stars are promising sources of gravitational radiation. Upper limits on gravitat...
We study the problem of detecting, and inferring astrophysical information from, gravitational waves...
We discuss the possibility that future gravitational-wave detectors may be able to detect various mo...
[eng] Pulsars are neutron stars–remnants of very massive stars– that emit intense electromagnetic ra...
We present new results for pulsating stars in general relativity. First we show that the so-called g...
© 2014 Dr. Mark Francis BennettThis thesis investigates continuous and stochastic gravitational wave...
Gravitational radiation drives an instability in the r-modes of young rapidly rotating neutron stars...
The physical mechanisms responsible for pulsar timing glitches are thought to excite quasi-normal mo...
We review the detectability of gravitational waves generated by oscillations excited during a phase ...
Rotating, non-axisymmetric neutron stars are expected to emit continuous gravitational waves at a ne...
The physical mechanisms responsible for pulsar timing glitches are thought to excite quasinormal mod...
Continuous gravitational waves from neutron stars could provide an invaluable resource to learn abou...
t Glitches in pulsars are likely to trigger oscillation modes in the fluid interior of neutron stars...
We have used data from the third and fourth science runs of the laser interferometric gravitational ...
[eng] Gravitational waves (GWs) can offer a novel window into the structure and dynamics of neutron ...
Oscillating compact stars are promising sources of gravitational radiation. Upper limits on gravitat...
We study the problem of detecting, and inferring astrophysical information from, gravitational waves...
We discuss the possibility that future gravitational-wave detectors may be able to detect various mo...
[eng] Pulsars are neutron stars–remnants of very massive stars– that emit intense electromagnetic ra...
We present new results for pulsating stars in general relativity. First we show that the so-called g...
© 2014 Dr. Mark Francis BennettThis thesis investigates continuous and stochastic gravitational wave...
Gravitational radiation drives an instability in the r-modes of young rapidly rotating neutron stars...
The physical mechanisms responsible for pulsar timing glitches are thought to excite quasi-normal mo...
We review the detectability of gravitational waves generated by oscillations excited during a phase ...
Rotating, non-axisymmetric neutron stars are expected to emit continuous gravitational waves at a ne...
The physical mechanisms responsible for pulsar timing glitches are thought to excite quasinormal mod...
Continuous gravitational waves from neutron stars could provide an invaluable resource to learn abou...