In this article we discuss theoretical and experimental investigations of the use of eddy-current damping for multi-stage pendulum suspensions such as those intended for use in Advanced LIGO, the proposed upgrade to LIGO (the US laser interferometric gravitational-wave observatory). The design of these suspensions is based on the triple pendulum suspension design developed for GEO 600, the German/UK interferometric gravitational wave detector, currently being commissioned. In that detector all the low frequency resonant modes of the triple pendulums are damped by control systems using collocated sensing and feedback at the highest mass of each pendulum, so that significant attenuation of noise associated with this so-called local control is...
In this article we describe aspects of the suspension system for each of the main optics (test masse...
Low-mass suspension systems with high- Q pendulum stages are used to enable quantum radiation pre...
We describe the design of the suspension systems for the major optics for Advanced LIGO, the upgrade...
In this article we discuss theoretical and experimental investigations of the use of eddy-current da...
In this article we discuss theoretical and experimental investigations of the use of eddy-current da...
In this article we discuss theoretical and experimental investigations of the use of eddy-current da...
In this paper, we describe the conceptual design for the suspension system for the test masses for A...
In this paper, we describe the conceptual design for the suspension system for the test masses for A...
In this paper, we describe the conceptual design for the suspension system for the test masses for A...
In this paper, we describe the conceptual design for the suspension system for the test masses for A...
The test masses of a large interferometric gravity wave detector (VIRGO project) will be controlled ...
In this paper, we describe the conceptual design for the suspension system for the test masses for A...
Low mass suspension systems with high-Q pendulum stages are used to enable quantum radiation pressur...
In this article we describe aspects of the suspension system for each of the main optics (test masse...
In this article we describe aspects of the suspension system for each of the main optics (test masse...
In this article we describe aspects of the suspension system for each of the main optics (test masse...
Low-mass suspension systems with high- Q pendulum stages are used to enable quantum radiation pre...
We describe the design of the suspension systems for the major optics for Advanced LIGO, the upgrade...
In this article we discuss theoretical and experimental investigations of the use of eddy-current da...
In this article we discuss theoretical and experimental investigations of the use of eddy-current da...
In this article we discuss theoretical and experimental investigations of the use of eddy-current da...
In this paper, we describe the conceptual design for the suspension system for the test masses for A...
In this paper, we describe the conceptual design for the suspension system for the test masses for A...
In this paper, we describe the conceptual design for the suspension system for the test masses for A...
In this paper, we describe the conceptual design for the suspension system for the test masses for A...
The test masses of a large interferometric gravity wave detector (VIRGO project) will be controlled ...
In this paper, we describe the conceptual design for the suspension system for the test masses for A...
Low mass suspension systems with high-Q pendulum stages are used to enable quantum radiation pressur...
In this article we describe aspects of the suspension system for each of the main optics (test masse...
In this article we describe aspects of the suspension system for each of the main optics (test masse...
In this article we describe aspects of the suspension system for each of the main optics (test masse...
Low-mass suspension systems with high- Q pendulum stages are used to enable quantum radiation pre...
We describe the design of the suspension systems for the major optics for Advanced LIGO, the upgrade...