We report a fiber-optic 10 GHz frequency transfer technique based on an optical–electronic joint phase compensator. A highly stable frequency signal at 10 GHz was transferred in a 50-km long fiber link by using this technique. Two key parameters of the frequency dissemination, the timing fluctuation and frequency stability were both measured. The experimental results show the root-mean-square timing fluctuation of the transferred microwave is about 103 fs within 10,000 s, and the frequency stability for the transmission link is 2.2 × 10−14 at 1 s and 8.5 × 10−17 at 2000 s. The technique proposed in this paper provides a powerful tool which can be used to transfer atomic clocks (e.g., commercial H-master and Cs clocks) in a long fiber link
To achieve high-stability and high-precision dissemination of radio frequency signals over a long di...
Optical clocks show unprecedented accuracy, surpassing that of previously available clock systems by...
We demonstrate feed-forward digital compensation technique applied in both precise frequency transfe...
We use a new technique to disseminate microwave reference signals along ordinary optical fiber. The ...
Comparing and synchronizing atomic clocks between distant laboratories with ultra-stable frequency t...
We demonstrate the transfer of an ultrastable microwave frequency by transmitting a 30-nm-wide optic...
We report a novel technique for highly stable transfer of a frequency comb over long optical fiber l...
We use a new technique to disseminate microwave reference signals along ordinary optical fiber. The ...
We use a new technique to disseminate microwave reference signals along ordinary optical fiber. The ...
We developed a new radio frequency dissemination system based on an optical fiber link. A 1.55 mu m ...
In this paper, we demonstrate a radio frequency dissemination system via fiber link. An electric pha...
Abstract-We report a novel system for highly stable 100 MHz mode locked pulse as a reference frequen...
We demonstrate a hybrid solution for simultaneous transfer of ultra-stable optical frequency, RF fre...
A radio-frequency (RF) dissemination system using an optical comb over a 50-km fiber link has been d...
We have developed a radio-frequency local oscillator remote distribution system, which transfers a p...
To achieve high-stability and high-precision dissemination of radio frequency signals over a long di...
Optical clocks show unprecedented accuracy, surpassing that of previously available clock systems by...
We demonstrate feed-forward digital compensation technique applied in both precise frequency transfe...
We use a new technique to disseminate microwave reference signals along ordinary optical fiber. The ...
Comparing and synchronizing atomic clocks between distant laboratories with ultra-stable frequency t...
We demonstrate the transfer of an ultrastable microwave frequency by transmitting a 30-nm-wide optic...
We report a novel technique for highly stable transfer of a frequency comb over long optical fiber l...
We use a new technique to disseminate microwave reference signals along ordinary optical fiber. The ...
We use a new technique to disseminate microwave reference signals along ordinary optical fiber. The ...
We developed a new radio frequency dissemination system based on an optical fiber link. A 1.55 mu m ...
In this paper, we demonstrate a radio frequency dissemination system via fiber link. An electric pha...
Abstract-We report a novel system for highly stable 100 MHz mode locked pulse as a reference frequen...
We demonstrate a hybrid solution for simultaneous transfer of ultra-stable optical frequency, RF fre...
A radio-frequency (RF) dissemination system using an optical comb over a 50-km fiber link has been d...
We have developed a radio-frequency local oscillator remote distribution system, which transfers a p...
To achieve high-stability and high-precision dissemination of radio frequency signals over a long di...
Optical clocks show unprecedented accuracy, surpassing that of previously available clock systems by...
We demonstrate feed-forward digital compensation technique applied in both precise frequency transfe...