DocumentCode
3548653
Title
Time-domain model for Advanced LIGO interferometer
Author
Varvella, Monica
Author_Institution
Lab. de l´´Accelerateur Lineaire, Orsay, France
Volume
7
fYear
2004
fDate
16-22 Oct. 2004
Firstpage
4629
Abstract
A time-domain model for AdvLIGO interferometer has been implemented using LIGO End to End simulation framework. AdvLIGO interferometer configuration is a dual-recycled Fabry-Perot Michelson. The system is highly complex: it requires a good understanding in the control of the microscopic positions of seven mirrors to keep five strongly-coupled interferometric degrees of freedom at their working point. The transition from the uncontrolled to the controlled state (lock acquisition) necessitates a time-domain simulation to understand and guide the lock acquisition process using fast feedback systems. A productive interplay between simulation and experiment is required to achieve a good result. AdvLIGO interferometer is not yet ready but its configuration will be tested at CalTech´s 40 m laboratory in the near future, as it is the closest experiment to AdvLIGO. The time-domain model is built-up using macros to define IFO parameters: in this way one is able to switch easily between the 40 m configuration and the Advanced LIGO configuration.
Keywords
Mach-Zehnder interferometers; gravitational wave detectors; gravitational waves; AdvLIGO interferometer; Advanced LIGO interferometer; CalTech laboratory; IFO parameters; LIGO End to End simulation; Mach-Zehnder interferometer; controlled state; dual-recycled Fabry-Perot Michelson; fast feedback systems; gravitational waves; interferometer detectors; lock acquisition process; mirrors; signal recycling; strongly-coupled interferometric degrees of freedom; time-domain model; Arm; Detectors; Fabry-Perot; Mirrors; Optical feedback; Optical interferometry; Optical sensors; Recycling; Testing; Time domain analysis;
fLanguage
English
Publisher
ieee
Conference_Titel
Nuclear Science Symposium Conference Record, 2004 IEEE
ISSN
1082-3654
Print_ISBN
0-7803-8700-7
Electronic_ISBN
1082-3654
Type
conf
DOI
10.1109/NSSMIC.2004.1466912
Filename
1466912
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