Rotating neutron stars are one of the important sources of gravitational waves (GW) for the ground based as well as space based detectors. Since the waves are emitted continuously, the source is termed as a continuous gravitational wave (CGW) source. The expected weakness of the signal requires long integration times (~year). The data analysis problem involves tracking the phase coherently over such large integration times, which makes it the most computationally intensive problem among all GW sources envisaged. In this article, the general problem of data analysis is discussed, and more so, in the context of searching for CGW sources orbiting another companion object. The problem is important because there are several pulsars, which could ...
Rapidly spinning neutron stars are promising sources of continuous gravitational waves. Detecting su...
We investigate the computational requirements for all-sky, all-frequency searches for gravitational ...
Observational gravitational wave astronomy is a young field, begun in 2015 with the detection of the...
Rotating neutron stars are one of the important sources of gravitational waves (GW) for the ground b...
The era of advanced ground based interferometric detectors of gravitational waves (GW) has arrived. ...
The detection of continuous gravitational waves is among the main targets of the LIGO and Virgo dete...
Isolated rotating neutron stars, asymmetric with respect to their rotational axes, are expected to e...
This paper gives an introductory overview of the search for continuous gravitational waves from spin...
Rapidly spinning neutron stars are promising sources of continuous gravitational waves. Detecting su...
The gravitational waves emitted by neutron stars carry unique information about their structure and ...
[eng] For the first time, scientists have observed ripples in the fabric of space-time called gravit...
Seven years after the first direct detection of gravitational waves, from the collision of two black...
Rapidly rotating neutron stars are promising sources of continuous gravitational wave radiation for ...
This thesis concerns the analysis of continuous gravitational waves from neutron stars with non-axis...
We describe a hierarchical, highly parallel computer algorithm to perform searches for unknown sourc...
Rapidly spinning neutron stars are promising sources of continuous gravitational waves. Detecting su...
We investigate the computational requirements for all-sky, all-frequency searches for gravitational ...
Observational gravitational wave astronomy is a young field, begun in 2015 with the detection of the...
Rotating neutron stars are one of the important sources of gravitational waves (GW) for the ground b...
The era of advanced ground based interferometric detectors of gravitational waves (GW) has arrived. ...
The detection of continuous gravitational waves is among the main targets of the LIGO and Virgo dete...
Isolated rotating neutron stars, asymmetric with respect to their rotational axes, are expected to e...
This paper gives an introductory overview of the search for continuous gravitational waves from spin...
Rapidly spinning neutron stars are promising sources of continuous gravitational waves. Detecting su...
The gravitational waves emitted by neutron stars carry unique information about their structure and ...
[eng] For the first time, scientists have observed ripples in the fabric of space-time called gravit...
Seven years after the first direct detection of gravitational waves, from the collision of two black...
Rapidly rotating neutron stars are promising sources of continuous gravitational wave radiation for ...
This thesis concerns the analysis of continuous gravitational waves from neutron stars with non-axis...
We describe a hierarchical, highly parallel computer algorithm to perform searches for unknown sourc...
Rapidly spinning neutron stars are promising sources of continuous gravitational waves. Detecting su...
We investigate the computational requirements for all-sky, all-frequency searches for gravitational ...
Observational gravitational wave astronomy is a young field, begun in 2015 with the detection of the...