We present the first experimental confirmation of the so-called 'self-phase-locked delay interferometry'. This laser frequency stabilization technique consists basically in comparing the prompt laser signal with a delayed version of itself that has been reflected in another LISA satellite 5 × 109 m away. In our table-top experiment, the phase of a voltage-controlled oscillator is stabilized by means of a control loop based on this technique. In agreement with the theory, the measured unity gain frequency is not limited by the inverse of the used delay (1.6 µs). In the time domain, the system also behaves as predicted, including the appearance of a quasi-periodic 'ringing' just after the lock acquisition, which decays exponentially. Its init...
Abstract. Recent advances at JPL in experimentation and design for LISA interferometry include the d...
We analyze a technique for suppressing laser frequency noise for the laser interferometer space ante...
In an effort to eliminate laser phase noise in laser interferometer spaceborne gravitational wave de...
We present the first experimental confirmation of the so-called 'self-phase-locked delay interferome...
We present the first experimental confirmation of the so-called ‘self-phase-locked delay interferome...
We present detailed numerical simulations of a laser phase stabilization scheme for LISA, where both...
Abstract. LISA relies on several techniques to reduce the initial laser frequency noise in order to ...
A phase-locking configuration for LISA is proposed that provides a significantly simpler mode of ope...
At the University of Florida, we are developing an experimental Laser Interferometer Space Antenna (...
Overcoming laser frequency noise is a significant technical challenge for achieving the design sensi...
Recent advances at JPL in experimentation and design for LISA interferometry include the demonstrati...
For the Laser Interferometer Space Antenna (LISA) to reach its design sensitivity, the coupling of t...
We discuss the baseline optical configuration for the Laser Interferometer Space Antenna (LISA) miss...
We report on the first demonstration of time-delay interferometry (TDI) for LISA, the Laser Interfer...
The Laser Interferometer Space Antenna (LISA) will be the first dedicated space based gravitational ...
Abstract. Recent advances at JPL in experimentation and design for LISA interferometry include the d...
We analyze a technique for suppressing laser frequency noise for the laser interferometer space ante...
In an effort to eliminate laser phase noise in laser interferometer spaceborne gravitational wave de...
We present the first experimental confirmation of the so-called 'self-phase-locked delay interferome...
We present the first experimental confirmation of the so-called ‘self-phase-locked delay interferome...
We present detailed numerical simulations of a laser phase stabilization scheme for LISA, where both...
Abstract. LISA relies on several techniques to reduce the initial laser frequency noise in order to ...
A phase-locking configuration for LISA is proposed that provides a significantly simpler mode of ope...
At the University of Florida, we are developing an experimental Laser Interferometer Space Antenna (...
Overcoming laser frequency noise is a significant technical challenge for achieving the design sensi...
Recent advances at JPL in experimentation and design for LISA interferometry include the demonstrati...
For the Laser Interferometer Space Antenna (LISA) to reach its design sensitivity, the coupling of t...
We discuss the baseline optical configuration for the Laser Interferometer Space Antenna (LISA) miss...
We report on the first demonstration of time-delay interferometry (TDI) for LISA, the Laser Interfer...
The Laser Interferometer Space Antenna (LISA) will be the first dedicated space based gravitational ...
Abstract. Recent advances at JPL in experimentation and design for LISA interferometry include the d...
We analyze a technique for suppressing laser frequency noise for the laser interferometer space ante...
In an effort to eliminate laser phase noise in laser interferometer spaceborne gravitational wave de...