Advanced Laser Interferometer Gravitational-wave Observatory (LIGO A+) is a major upgrade to LIGO—the Laser Interferometer Gravitational-wave Observatory. For the A+ project, we have developed, produced, and characterized sensors and electronics to interrogate new optical suspensions designed to isolate optics from vibrations. The central element is a displacement sensor with an integrated electromagnetic actuator known as a BOSEM (Birmingham Optical Sensor and ElectroMagnetic actuator) and its readout and drive electronics required to integrate them into LIGO’s control and data system. In this paper, we report on the improvements to the sensors and the testing procedures undertaken to meet the enhanced performance requirements set out by t...
The Advanced LIGO gravitational wave detectors are next generation instruments which will replace th...
A simple optical displacement sensor consisting of an infrared LED source, a photodiode detector, an...
Around the world, efforts are underway to commission several kilometer-scale laser interferometers t...
Advanced Laser Interferometer Gravitational-wave Observatory (LIGO A+) is a major upgrade to LIGO—th...
We have developed, produced and characterized integrated sensors, actuators and the related read-out...
We have developed, produced and characterized integrated sensors, actuators and the related read-out...
© 2020 authors. Published by the American Physical Society. On April 1st, 2019, the Advanced Laser I...
Sensitivity enhancements in the laser interferometer gravitational wave observatory (LIGO) project's...
We describe the design of the suspension systems for the major optics for Advanced LIGO, the upgrade...
We describe the design of the suspension systems for the major optics for Advanced LIGO, the upgrade...
The Advanced LIGO gravitational wave detectors are second-generation instruments designed and built ...
The Advanced LIGO gravitational wave detectors are next generation instruments which will replace th...
A simple optical displacement sensor consisting of an infrared LED source, a photodiode detector, an...
Around the world, efforts are underway to commission several kilometer-scale laser interferometers t...
Advanced Laser Interferometer Gravitational-wave Observatory (LIGO A+) is a major upgrade to LIGO—th...
We have developed, produced and characterized integrated sensors, actuators and the related read-out...
We have developed, produced and characterized integrated sensors, actuators and the related read-out...
© 2020 authors. Published by the American Physical Society. On April 1st, 2019, the Advanced Laser I...
Sensitivity enhancements in the laser interferometer gravitational wave observatory (LIGO) project's...
We describe the design of the suspension systems for the major optics for Advanced LIGO, the upgrade...
We describe the design of the suspension systems for the major optics for Advanced LIGO, the upgrade...
The Advanced LIGO gravitational wave detectors are second-generation instruments designed and built ...
The Advanced LIGO gravitational wave detectors are next generation instruments which will replace th...
A simple optical displacement sensor consisting of an infrared LED source, a photodiode detector, an...
Around the world, efforts are underway to commission several kilometer-scale laser interferometers t...