Galactic Binary Gravitational Wave Noise within LISA Frequency Band
arXiv:astro-ph/9801034 · doi:10.1086/305217
Abstract
Gravitational wave noise associated with unresolved binary stars in the Galaxy is studied with the special aim of determining the upper frequency at which it stops to contribute at the rms noise level of the proposed space-born interferometer (LISA). The upper limit to this background is derived from the statistics of SN Ia explosions, part of which can be triggered by binary white dwarf coalescences. The upper limiting frequency at which binary stochastic noise crosses LISA rms sensitivity is found to lie within the range 0.03-0.07 Hz, depending on the galactic binary white dwarf coalescence rate. To be reliably detectable by LISA, the energy density of relic cosmological background per logarithmic frequency interval should be Omega_{GW}h_{100}^2>10^{-8} at f>0.03 Hz.
16 pages with 1 eps figure, aasms4.sty, to appear in the ApJ vol. 494 February 20, 1998 issue
References in corpus (1)
Cited by in corpus (23)
- The Evolution of Compact Binary Star Systems
- The gravitational wave signal from the Galactic disk population of binaries containing two compact objects
- The LISA Gravitational Wave Foreground: A Study of Double White Dwarfs
- Gravitational waves from cosmological compact binaries
- Gravitational Wave Astronomy: in Anticipation of First Sources to be Detected
- Gravitational-wave emission from compact Galactic binaries
- Algebraic approach to time-delay data analysis for LISA
- Characterizing the Galactic Gravitational Wave Background with LISA
- The Evolution of Compact Binary Star Systems
- Science with the TianQin Observatory: Preliminary Results on Stochastic Gravitational-Wave Background
- Stochastic Background from Coalescences of NS-NS Binaries
- Studying the anisotropy of the gravitational wave stochastic background with LISA
- Detection of astrophysical gravitational wave sources by TianQin and LISA
- High energy physics and the very-early Universe with LISA
- Low frequency gravitational waves from black hole MACHO binaries
- Consequences of Disk Scale Height on LISA Confusion Noise from Close White Dwarf Binaries
- Stochastic background from extra-galactic double neutron stars
- Gravitational wave background from coalescing compact stars in eccentric orbits
- Gravitational Radiation From Globular Clusters
- Gravitational waves from coalescing binaries and Doppler experiments
- Stochastic background from inspiralling double neutron stars
- Black Holes, Mergers, and the Entropy Budget of the Universe
- Population Synthesis of Gravitational Wave Sources