In our previous work we investigated the effect of the hypothetical reflecting boundary near the black hole event horizon on the waveform from extreme mass-ratio inspirals (EMRIs). Even if the reflection efficiency is not extremely high, we found that a significant modification of the waveform can be expected. Then, the question is how to implement the search for this signature in the actual data analysis of future space gravitational wave antennas, such as LISA. In this paper we propose a simple but efficient method to detect the signature of the reflecting boundary. The interesting feature of the effect of the reflecting boundary on the orbital evolution of EMRIs is that the energy and angular momentum loss rates periodically oscillate in...
Extreme-mass-ratio inspirals (\textsc{emri}s) are candidate events for gravitational wave detection ...
Extreme-mass-ratio inspirals (EMRI) are prospective sources for the detection of observational signa...
The space-based Laser Interferometer Space Antenna (LISA) will be able to observe the gravitational-...
In this article we consider prospects for detecting extreme mass ratio inspirals (EMRIs) using gravi...
A compact object with a mass $\mathcal{O}(1 \sim 1000) M_{\odot}$, such as a black hole of stellar o...
The inspirals of stellar-mass compact objects into supermassive black holes are some of the most exc...
Extreme mass-ratio inspirals (EMRIs) detectable by the Laser Interferometer Space Antenna (LISA) are...
In 2015, gravitational waves (GWs) were observed by direct detection for the very first time, over o...
We estimate the accuracy in the measurement of the tidal Love number of a supermassive compact objec...
Future space based gravitational wave detectors, such as the Laser Interferometer Space Antenna (LIS...
The planned Laser Interferometer Space Antenna (LISA) is expected to detect gravitational wave signa...
One of the most exciting potential sources of gravitational waves for low-frequency, space-based gra...
The space-based Laser Interferometer Space Antenna (LISA) will be able to observe the gravitational-...
The inspirals of compact objects into massive black holes are some of the most exciting of the poten...
Abstract. Extreme-mass-ratio inspirals (EMRIs) of compact objects with mass m ∼ 1 − 10 M into massiv...
Extreme-mass-ratio inspirals (\textsc{emri}s) are candidate events for gravitational wave detection ...
Extreme-mass-ratio inspirals (EMRI) are prospective sources for the detection of observational signa...
The space-based Laser Interferometer Space Antenna (LISA) will be able to observe the gravitational-...
In this article we consider prospects for detecting extreme mass ratio inspirals (EMRIs) using gravi...
A compact object with a mass $\mathcal{O}(1 \sim 1000) M_{\odot}$, such as a black hole of stellar o...
The inspirals of stellar-mass compact objects into supermassive black holes are some of the most exc...
Extreme mass-ratio inspirals (EMRIs) detectable by the Laser Interferometer Space Antenna (LISA) are...
In 2015, gravitational waves (GWs) were observed by direct detection for the very first time, over o...
We estimate the accuracy in the measurement of the tidal Love number of a supermassive compact objec...
Future space based gravitational wave detectors, such as the Laser Interferometer Space Antenna (LIS...
The planned Laser Interferometer Space Antenna (LISA) is expected to detect gravitational wave signa...
One of the most exciting potential sources of gravitational waves for low-frequency, space-based gra...
The space-based Laser Interferometer Space Antenna (LISA) will be able to observe the gravitational-...
The inspirals of compact objects into massive black holes are some of the most exciting of the poten...
Abstract. Extreme-mass-ratio inspirals (EMRIs) of compact objects with mass m ∼ 1 − 10 M into massiv...
Extreme-mass-ratio inspirals (\textsc{emri}s) are candidate events for gravitational wave detection ...
Extreme-mass-ratio inspirals (EMRI) are prospective sources for the detection of observational signa...
The space-based Laser Interferometer Space Antenna (LISA) will be able to observe the gravitational-...