The gravitational wave background signal from tidal disruption events
arXiv:2007.13225 · doi:10.1093/mnras/staa2290
Abstract
In this paper we derive the gravitational wave stochastic background from tidal disruption events (TDEs). We focus on both the signal emitted by main sequence stars disrupted by super-massive black holes (SMBHs) in galaxy nuclei, and on that from disruptions of white dwarfs by intermediate mass black holes (IMBHs) located in globular clusters. We show that the characteristic strain 's dependence on frequency is shaped by the pericenter distribution of events within the tidal radius, and under standard assumptions . This is because the TDE signal is a burst of gravitational waves at the orbital frequency of the closest approach. In addition, we compare the background characteristic strains with the sensitivity curves of the upcoming generation of space-based gravitational wave interferometers: the Laser Interferometer Space Antenna (LISA), TianQin, ALIA, the DECI-hertz inteferometer Gravitational wave Observatory (DECIGO) and the Big Bang Observer (BBO). We find that the background produced by main sequence stars might be just detected by BBO in its lowest frequency coverage, but it is too weak for all the other instruments. On the other hand, the background signal from TDEs with white dwarfs will be within reach of ALIA, and especially of DECIGO and BBO, while it is below the LISA and TianQin sensitive curves. This background signal detection will not only provide evidence for the existence of IMBHs up to redshift , but it will also inform us on the number of globular clusters per galaxy and on the occupation fraction of IMBHs in these environments.
Accepted for Publications in MNRAS. 11 pages, 5 figures
References in corpus (8)
- Gravitational-wave sensitivity curves
- The stochastic gravitational-wave background from massive black hole binary systems: implications for observations with Pulsar Timing Arrays
- Stellar disruption by a supermassive black hole: is the light curve really proportional to ?
- General Relativistic Hydrodynamic Simulation of Accretion Flow from a Stellar Tidal Disruption
- Astrophysical Smooth Particle Hydrodynamics
- X-ray Brightening and UV Fading of Tidal Disruption Event ASASSN-15oi
- Gravitational waves from the Papaloizou-Pringle instability in black hole-torus systems
- CDF-S XT1 and XT2: White Dwarf Tidal Disruption Events by Intermediate-Mass Black Holes?
Cited by in corpus (12)
- Science objectives of the Einstein Probe mission
- Appreciating mergers for understanding the non-linear - and - relations, updated herein, and the implications for the (reduced) role of AGN feedback
- Detection of astrophysical gravitational wave sources by TianQin and LISA
- The Lunar Gravitational-wave Antenna: Mission Studies and Science Case
- Milli-Hertz Gravitational Wave Background Produced by Quasi-Periodic Eruptions
- Generation of gravitational waves and tidal disruptions in clumpy galaxies
- On the Tidal Capture of White Dwarfs by Intermediate-mass Black Holes in Dense Stellar Environments
- Lensing of gravitational waves from tidal disruption events
- Astrophysics with the Laser Interferometer Space Antenna
- Deviation in stellar trajectory induced by asymmetry in partial tidal disruption
- Rates of Strongly Lensed Tidal Disruption Events
- Updated predictions for gravitational wave emission from TDEs for next generation observatories