Next generation linear colliders require high stability, low noise distribution of RF phase and timing signals. We describe a fiber-optics system that transmits phase at 357MHz, at a 1500nm wavelength, over a distance of 15 kilometers. Phase length errors in the transmission fiber are measured using the phase of the signal reflected from the fiber end. Corrections are performed by controlling the temperature of a 6-kilometer fiber spool placed in series with the main transmission fiber. This system has demonstrated a phase stability better than 10 femtoseconds per degree C, per kilometer, an improvement of a factor of>2000 relative to un-stabilized fiber. This system uses standard low cost telecom fiber and components
We present a cost-effective solution for the synchronization of RF signal sources separated by tens ...
We present a novel optical fiber-based radio-frequency distribution system that incorporates low-cos...
We present a cost-effective solution for the synchronization of RF signal sources separated by tens ...
The distribution system of the rf reference line for the linear collider is required to supply stabl...
The Next Linear Collider accelerator will require phase synchronization of ~20 °X-band (11.424 GHz) ...
We have developed a radio-frequency local oscillator remote distribution system, which transfers a p...
New scientific applications require phase-stabilized RF distribution to multiple remote locations. T...
The frequency distribution system for the TESLA linear collider must deliver a highly phase stable r...
The frequency distribution system for the TESLA linear collider must deliver a highly phase stable r...
To achieve high-stability and high-precision dissemination of radio frequency signals over a long di...
Experimental results on the stability of the output phase of a frequency distribution system from se...
Experimental results on the stability of the output phase of a frequency distribution system from se...
We present a cost-effective solution for the synchronization of RF signal sources separated by tens ...
In this paper, we demonstrate a radio frequency dissemination system via fiber link. An electric pha...
We present a cost-effective solution for the synchronization of RF signal sources separated by tens ...
We present a cost-effective solution for the synchronization of RF signal sources separated by tens ...
We present a novel optical fiber-based radio-frequency distribution system that incorporates low-cos...
We present a cost-effective solution for the synchronization of RF signal sources separated by tens ...
The distribution system of the rf reference line for the linear collider is required to supply stabl...
The Next Linear Collider accelerator will require phase synchronization of ~20 °X-band (11.424 GHz) ...
We have developed a radio-frequency local oscillator remote distribution system, which transfers a p...
New scientific applications require phase-stabilized RF distribution to multiple remote locations. T...
The frequency distribution system for the TESLA linear collider must deliver a highly phase stable r...
The frequency distribution system for the TESLA linear collider must deliver a highly phase stable r...
To achieve high-stability and high-precision dissemination of radio frequency signals over a long di...
Experimental results on the stability of the output phase of a frequency distribution system from se...
Experimental results on the stability of the output phase of a frequency distribution system from se...
We present a cost-effective solution for the synchronization of RF signal sources separated by tens ...
In this paper, we demonstrate a radio frequency dissemination system via fiber link. An electric pha...
We present a cost-effective solution for the synchronization of RF signal sources separated by tens ...
We present a cost-effective solution for the synchronization of RF signal sources separated by tens ...
We present a novel optical fiber-based radio-frequency distribution system that incorporates low-cos...
We present a cost-effective solution for the synchronization of RF signal sources separated by tens ...