Advanced LIGO
arXiv:1411.4547 · doi:10.1088/0264-9381/32/7/074001
Abstract
The Advanced LIGO gravitational wave detectors are second generation instruments designed and built for the two LIGO observatories in Hanford, WA and Livingston, LA. The two instruments are identical in design, and are specialized versions of a Michelson interferometer with 4 km long arms. As in initial LIGO, Fabry-Perot cavities are used in the arms to increase the interaction time with a gravitational wave, and power recycling is used to increase the effective laser power. Signal recycling has been added in Advanced LIGO to improve the frequency response. In the most sensitive frequency region around 100 Hz, the design strain sensitivity is a factor of 10 better than initial LIGO. In addition, the low frequency end of the sensitivity band is moved from 40 Hz down to 10 Hz. All interferometer components have been replaced with improved technologies to achieve this sensitivity gain. Much better seismic isolation and test mass suspensions are responsible for the gains at lower frequencies. Higher laser power, larger test masses and improved mirror coatings lead to the improved sensitivity at mid- and high- frequencies. Data collecting runs with these new instruments are planned to begin in mid-2015.
References in corpus (6)
- LIGO: The Laser Interferometer Gravitational-Wave Observatory
- Titania-doped tantala/silica coatings for gravitational-wave detection
- Calibration of the LIGO Gravitational Wave Detectors in the Fifth Science Run
- Thermo-optic noise in coated mirrors for high-precision optical measurements
- Sensors and Actuators for the Advanced LIGO Mirror Suspensions
- Environmental Influences on the LIGO Gravitational Wave Detectors during the 6th Science Run
Cited by in corpus (5)
- A Gravitational Wave Detector with Cosmological Reach
- Prospects for doubling the range of Advanced LIGO
- Observation of Parametric Instability in Advanced LIGO
- Gravitational waves from Sco X-1: A comparison of search methods and prospects for detection with advanced detectors
- Model-Based Cross-Correlation Search for Gravitational Waves from Scorpius X-1