The laser interferometer space antenna will be the first space-based laser interferometric gravitational wave detector. This paper provides a brief introduction to the LISA mission and science goals, highlighting the differences from ground-based detectors. A tutorial of the LISA measurement concept is presented focusing on the LISA interferometry with a summary of laser frequency noise cancellation and clock noise removal schemes
LISA, the Laser Interferometer Space Antenna, will be launched by NASA and ESA in the 2014 timeframe...
LISA (Laser Interferometer Space Antenna) is a proposed space mission which will use coherent laser ...
Gravitational Waves will open an entirely new window to the Universe, different from all other astro...
The existence of gravitational waves is the most prominent of Einstein's predictions that has not ye...
The Laser Interferometer Space Antenna (LISA) is one of the most ambitious space science missions in...
The space project LISA is approved by ESA as a cornerstone mission in the field of 'fundamental phys...
The gravitational wave spectrum covers many decades in frequency. Sources in the audio-frequency reg...
The space project LISA is approved by ESA as a cornerstone mission in the field of 'fundamental phys...
The goal with LISA (Laser Interferometer Space Antenna) is to detect and study low-frequency astroph...
The existence of gravitational waves is the most prominent of Einstein’s predictions that has not ye...
For many years there has been a sustained worldwide effort to develop suitable detectors for gravita...
We present the requirements, design, and tests of a potential laser system for the Laser Interferome...
Abstract. The gravitational wave spectrum covers many decades in frequency. Sources in the audio-fre...
This document presents the results of a design feasibility study for LISA (Laser Interferometer Spac...
Abstract. The Laser Interferometer Space Antenna (LISA) is a joint ESA-NASA mission designed to obse...
LISA, the Laser Interferometer Space Antenna, will be launched by NASA and ESA in the 2014 timeframe...
LISA (Laser Interferometer Space Antenna) is a proposed space mission which will use coherent laser ...
Gravitational Waves will open an entirely new window to the Universe, different from all other astro...
The existence of gravitational waves is the most prominent of Einstein's predictions that has not ye...
The Laser Interferometer Space Antenna (LISA) is one of the most ambitious space science missions in...
The space project LISA is approved by ESA as a cornerstone mission in the field of 'fundamental phys...
The gravitational wave spectrum covers many decades in frequency. Sources in the audio-frequency reg...
The space project LISA is approved by ESA as a cornerstone mission in the field of 'fundamental phys...
The goal with LISA (Laser Interferometer Space Antenna) is to detect and study low-frequency astroph...
The existence of gravitational waves is the most prominent of Einstein’s predictions that has not ye...
For many years there has been a sustained worldwide effort to develop suitable detectors for gravita...
We present the requirements, design, and tests of a potential laser system for the Laser Interferome...
Abstract. The gravitational wave spectrum covers many decades in frequency. Sources in the audio-fre...
This document presents the results of a design feasibility study for LISA (Laser Interferometer Spac...
Abstract. The Laser Interferometer Space Antenna (LISA) is a joint ESA-NASA mission designed to obse...
LISA, the Laser Interferometer Space Antenna, will be launched by NASA and ESA in the 2014 timeframe...
LISA (Laser Interferometer Space Antenna) is a proposed space mission which will use coherent laser ...
Gravitational Waves will open an entirely new window to the Universe, different from all other astro...