We stabilized the carrier-envelope phase of the pulses emitted by a femtosecond mode-locked laser by using the powerful tools of frequency-domain laser stabilization. We confirmed control of the pulse-to-pulse carrier-envelope phase using temporal cross correlation. This phase stabilization locks the absolute frequencies emitted by the laser, which we used to perform absolute optical frequency measurements that were directly referenced to a stable microwave clock
In the past few years, ultrafast laser technology has developed to such a degree that the phase of a...
An f-2f-interferometer was set up to measure the carrier-envelope phase (CEP) of ultrashort laser pu...
In the last decades the scientific development has made it possible to produce pulses with durations...
We demonstrate that the stability of the current optical frequency comb generated by a Kerr-lens mod...
Abstract. : We analyze and stabilize fluctuations of the relative phase between the carrier and the ...
Abstract. We present results on carrier-envelope phase stabilization of mode-locked lasers. The carr...
Abstract. The shortest pulses periodically emitted directly from a mode-locked Ti:sapphire laser are...
Precision phase control of an ultrawide-bandwidth optical-frequency comb has produced remarkable and...
Precision phase control of an ultrawide-bandwidth optical-frequency comb has produced remarkable and...
We demonstrate a long-term operation with reduced phase noise in the carrier-envelope-phase (CEP) st...
International audienceWe demonstrate arbitrary carrier-envelope (CE) phase control of femtosecond la...
Controlling the carrier envelope phase (CEP) in mode-locked lasers over practically long timescales ...
Abstract—Inside a femtosecond laser oscillator, no coupling mechanism between the propagation speeds...
The carrier-envelope phase and repetition rate of Ti:sapphire laser were locked with a TV-Rb clock. ...
We demonstrate optical clockwork without carrier-envelope phase control using sum-frequency generati...
In the past few years, ultrafast laser technology has developed to such a degree that the phase of a...
An f-2f-interferometer was set up to measure the carrier-envelope phase (CEP) of ultrashort laser pu...
In the last decades the scientific development has made it possible to produce pulses with durations...
We demonstrate that the stability of the current optical frequency comb generated by a Kerr-lens mod...
Abstract. : We analyze and stabilize fluctuations of the relative phase between the carrier and the ...
Abstract. We present results on carrier-envelope phase stabilization of mode-locked lasers. The carr...
Abstract. The shortest pulses periodically emitted directly from a mode-locked Ti:sapphire laser are...
Precision phase control of an ultrawide-bandwidth optical-frequency comb has produced remarkable and...
Precision phase control of an ultrawide-bandwidth optical-frequency comb has produced remarkable and...
We demonstrate a long-term operation with reduced phase noise in the carrier-envelope-phase (CEP) st...
International audienceWe demonstrate arbitrary carrier-envelope (CE) phase control of femtosecond la...
Controlling the carrier envelope phase (CEP) in mode-locked lasers over practically long timescales ...
Abstract—Inside a femtosecond laser oscillator, no coupling mechanism between the propagation speeds...
The carrier-envelope phase and repetition rate of Ti:sapphire laser were locked with a TV-Rb clock. ...
We demonstrate optical clockwork without carrier-envelope phase control using sum-frequency generati...
In the past few years, ultrafast laser technology has developed to such a degree that the phase of a...
An f-2f-interferometer was set up to measure the carrier-envelope phase (CEP) of ultrashort laser pu...
In the last decades the scientific development has made it possible to produce pulses with durations...