Long-term stable timing distribution over a 3.5-km polarization maintaining (PM) fiber link using balanced optical cross-correlators (BOC) for optical-to-optical synchronization is demonstrated. Remote laser synchronization over 40 hours showed a residual timing jitter and drift of 2.5 fs for the whole locking period and only 1.1 fs integrated from 100 μHz to 1 MHz. This result corresponds to the lowest jitter and drift achieved to date for a multi-km fiber link and remote timing synchronization operating continuously over multiple days
We present a powerful jitter analysis method for timing-distribution and remote-laser synchronizatio...
In femtosecond pump/probe experiments using short X-Ray and optical pulses, precise synchronization...
One of the key challenges for the next-generation light sources such as X-FELs is to implement a tim...
Long-term stable timing distribution over a 3.5-km polarization maintaining (PM) fiber link using ba...
Long-term stable timing distribution over a 3.5-km polarization maintaining (PM) fiber link using ba...
Long-term stable timing distribution over a 3.5-km polarization maintaining (PM) fiber link using ba...
We present recent progress made in optical, high-precision, long-term stable timing distribution sys...
We present here key developments for an all-optical timing distribution system with sub-femtosecond ...
Sub-fs X-ray pulse generation in kilometre-scale FEL facilities will require sub-fs long-term timing...
Using balanced detection in both the radio frequency (RF) and the optical domain, we remotely synchr...
A 1.2-km timing-stabilized, polarization-maintaining fiber link based on balanced optical cross-corr...
We report recent progress made in a complete fiber-optic, high-precision, long-term stable timing di...
Long-term stable timing transfer over a multi-km fiber network is reported. Output of two independen...
Precise timing distribution is critical for realizing a new regime of light control in next-generati...
We report a cascaded optical link of 1100 km for ultra-stable frequency distribution over an Interne...
We present a powerful jitter analysis method for timing-distribution and remote-laser synchronizatio...
In femtosecond pump/probe experiments using short X-Ray and optical pulses, precise synchronization...
One of the key challenges for the next-generation light sources such as X-FELs is to implement a tim...
Long-term stable timing distribution over a 3.5-km polarization maintaining (PM) fiber link using ba...
Long-term stable timing distribution over a 3.5-km polarization maintaining (PM) fiber link using ba...
Long-term stable timing distribution over a 3.5-km polarization maintaining (PM) fiber link using ba...
We present recent progress made in optical, high-precision, long-term stable timing distribution sys...
We present here key developments for an all-optical timing distribution system with sub-femtosecond ...
Sub-fs X-ray pulse generation in kilometre-scale FEL facilities will require sub-fs long-term timing...
Using balanced detection in both the radio frequency (RF) and the optical domain, we remotely synchr...
A 1.2-km timing-stabilized, polarization-maintaining fiber link based on balanced optical cross-corr...
We report recent progress made in a complete fiber-optic, high-precision, long-term stable timing di...
Long-term stable timing transfer over a multi-km fiber network is reported. Output of two independen...
Precise timing distribution is critical for realizing a new regime of light control in next-generati...
We report a cascaded optical link of 1100 km for ultra-stable frequency distribution over an Interne...
We present a powerful jitter analysis method for timing-distribution and remote-laser synchronizatio...
In femtosecond pump/probe experiments using short X-Ray and optical pulses, precise synchronization...
One of the key challenges for the next-generation light sources such as X-FELs is to implement a tim...