We present a theoretical background for the data analysis of the gravitational-wave signals from spinning neutron stars for Earth-based laser interferometric detectors. We introduce a detailed model of the signal including both the frequency and the amplitude modulations. We include the effects of the intrinsic frequency changes and the modulation of the frequency at the detector due to the Earth motion. We estimate the effects of the star's proper motion and of relativistic corrections. Moreover we consider a signal consisting of two components corresponding to a frequency $f$ and twice that frequency. From the maximum likelihood principle we derive the detection statistics for the signal and we calculate the probability density function o...
We have analysed three data sets, each two days long, of the EXPLORER resonant bar detector. We have...
We present a Markov chain Monte Carlo technique for detecting gravitational radiation from a neutron...
This paper comprises the theoretical background for the data analysis of gravitational waves (GWs) f...
We present a theoretical background for the data analysis of the gravitational-wave signals from spi...
Reviews sources of gravitational radiation that are likely to be detected by gravitational wave dete...
A data-analysis strategy based on the maximum-likelihood method (MLM) is presented for the detection...
A data-analysis strategy based on the maximum-likelihood method (MLM) is presented for the detection...
The tails of gravitational waves result from the non-linear interaction between the usual quadrupole...
The Markov chain Monte Carlo methods offer practical procedures for detecting signals characterized ...
International audienceAmong promising sources of gravitational waves are long-lived nearly periodic ...
International audienceA method for searching continuous gravitational wave (g.w.) signals from isola...
We present the Fourier Transform of the data output of gravitational wave laser interferometer for c...
We have analysed three data sets, each two days long, of the EXPLORER resonant bar detector. We have...
We present a Markov chain Monte Carlo technique for detecting gravitational radiation from a neutron...
This paper comprises the theoretical background for the data analysis of gravitational waves (GWs) f...
We present a theoretical background for the data analysis of the gravitational-wave signals from spi...
Reviews sources of gravitational radiation that are likely to be detected by gravitational wave dete...
A data-analysis strategy based on the maximum-likelihood method (MLM) is presented for the detection...
A data-analysis strategy based on the maximum-likelihood method (MLM) is presented for the detection...
The tails of gravitational waves result from the non-linear interaction between the usual quadrupole...
The Markov chain Monte Carlo methods offer practical procedures for detecting signals characterized ...
International audienceAmong promising sources of gravitational waves are long-lived nearly periodic ...
International audienceA method for searching continuous gravitational wave (g.w.) signals from isola...
We present the Fourier Transform of the data output of gravitational wave laser interferometer for c...
We have analysed three data sets, each two days long, of the EXPLORER resonant bar detector. We have...
We present a Markov chain Monte Carlo technique for detecting gravitational radiation from a neutron...
This paper comprises the theoretical background for the data analysis of gravitational waves (GWs) f...