The White Dwarf -- White Dwarf galactic background in the LISA data
arXiv:gr-qc/0504112 · doi:10.1103/PhysRevD.71.122003
Abstract
LISA (Laser Interferometer Space Antenna) is a proposed space mission, which will use coherent laser beams exchanged between three remote spacecraft to detect and study low-frequency cosmic gravitational radiation. In the low-part of its frequency band, the LISA strain sensitivity will be dominated by the incoherent superposition of hundreds of millions of gravitational wave signals radiated by inspiraling white-dwarf binaries present in our own galaxy. In order to estimate the magnitude of the LISA response to this background, we have simulated a synthesized population that recently appeared in the literature. We find the amplitude of the galactic white-dwarf binary background in the LISA data to be modulated in time, reaching a minimum equal to about twice that of the LISA noise for a period of about two months around the time when the Sun-LISA direction is roughly oriented towards the Autumn equinox. Since the galactic white-dwarfs background will be observed by LISA not as a stationary but rather as a cyclostationary random process with a period of one year, we summarize the theory of cyclostationary random processes, present the corresponding generalized spectral method needed to characterize such process, and make a comparison between our analytic results and those obtained by applying our method to the simulated data. We find that, by measuring the generalized spectral components of the white-dwarf background, LISA will be able to infer properties of the distribution of the white-dwarfs binary systems present in our Galaxy.
36 pages, 15 figures
References in corpus (11)
- Mass Transfer between Double White Dwarfs
- Short-period AM CVn systems as optical, X-ray and gravitational wave sources
- Time Delay Interferometry with Moving Spacecraft Arrays
- Data Combinations Accounting for LISA Spacecraft Motion
- Forward Modeling of Space-borne Gravitational Wave Detectors
- The Effects of Orbital Motion on LISA Time Delay Interferometry
- Optimal filtering of the LISA data
- LISA data analysis: Source identification and subtraction
- Operating LISA as a Sagnac interferometer
- Annual modulation of the Galactic binary confusion noise bakground and LISA data analysis
- The LISA Time-Delay Interferometry Zero-Signal Solution. I: Geometrical Properties
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