This paper presents a procedure to perform fully autonomous on-orbit alignment of the interferometer on board the LISA Technology Package (LTP). LTP comprises two free-floating test masses as inertial sensors that additionally serve as end mirrors of a set of interferometers. From the output signals of the interferometers, a subset has been selected to obtain alignment information of the test masses. Based on these signals, an alignment procedure was developed and successfully tested on the engineering model of the optical bench. Furthermore, operation procedures for the characterization of critical on-orbit properties of the optical metrology system (e.g. fibre noise) have been established
The interferometer of the LISA technology package (LTP) on SMART-2 is needed to verify the performan...
LISA Pathfinder is intended to demonstrate the key technologies for LISA, the Laser Interferometer S...
The LISA Technology Package (LTP) uses laser interferometry to measure the changes in relative displ...
This paper presents a procedure to perform fully autonomous on-orbit alignment of the interferometer...
This paper presents a procedure to perform fully autonomous on-orbit alignment of the interferometer...
The LISA Technology Package (LTP), to be launched by ESA in 2006/2007, is a technology demonstration...
The LISA Technology Package (LTP) aboard of LISA pathfinder mission is dedicated to demonstrate and ...
The LISA Technology Package (LTP), to be launched by ESA in 2008, is a technology demonstration miss...
LISA Pathfinder is a technology demonstration mission for the Laser Interferometer Space Antenna (LI...
When the position of a test mass in one dimension is measured with picometer accuracy, angular align...
In this article we describe the first investigations of the complete engineering model of the Optica...
The Laser Interferometer Space Antenna (LISA) is a joint ESA-NASA mission designed to observe gravit...
The Laser Interferometer Space Antenna (LISA) is a joint ESA-NASA mission designed to observe gravit...
The planned spaceborne gravitational wave detector LISA will allow the detection of gravitational wa...
This paper gives an update on the status of the LISA technology package (LTP) which is to be launche...
The interferometer of the LISA technology package (LTP) on SMART-2 is needed to verify the performan...
LISA Pathfinder is intended to demonstrate the key technologies for LISA, the Laser Interferometer S...
The LISA Technology Package (LTP) uses laser interferometry to measure the changes in relative displ...
This paper presents a procedure to perform fully autonomous on-orbit alignment of the interferometer...
This paper presents a procedure to perform fully autonomous on-orbit alignment of the interferometer...
The LISA Technology Package (LTP), to be launched by ESA in 2006/2007, is a technology demonstration...
The LISA Technology Package (LTP) aboard of LISA pathfinder mission is dedicated to demonstrate and ...
The LISA Technology Package (LTP), to be launched by ESA in 2008, is a technology demonstration miss...
LISA Pathfinder is a technology demonstration mission for the Laser Interferometer Space Antenna (LI...
When the position of a test mass in one dimension is measured with picometer accuracy, angular align...
In this article we describe the first investigations of the complete engineering model of the Optica...
The Laser Interferometer Space Antenna (LISA) is a joint ESA-NASA mission designed to observe gravit...
The Laser Interferometer Space Antenna (LISA) is a joint ESA-NASA mission designed to observe gravit...
The planned spaceborne gravitational wave detector LISA will allow the detection of gravitational wa...
This paper gives an update on the status of the LISA technology package (LTP) which is to be launche...
The interferometer of the LISA technology package (LTP) on SMART-2 is needed to verify the performan...
LISA Pathfinder is intended to demonstrate the key technologies for LISA, the Laser Interferometer S...
The LISA Technology Package (LTP) uses laser interferometry to measure the changes in relative displ...