Optical frequency combs based on erbium-doped fiber lasers are attractive tools in precision metrology due to their inherent compactness and stability. Here we study a femtosecond Er:fiber comb that passively eliminates the carrier–envelope phase slip by difference frequency generation. Quantum statistics inside the all-fiber soliton oscillator governs its free-running performance. Active stabilization of the repetition rate supports a subhertz optical linewidth and does not necessitate additional intracavity elements. Direct locking to an optical atomic frequency standard enables generation of a 100 MHz microwave signal with a stability of 3.4 mHz maintained over 15 min
Recent developments in stabilized lasers have resulted in ultrastable optical oscillators with spect...
It is the inevitable trend of the development for the optical frequency comb based on the Ti: sapphi...
A fully stabilized soliton microcomb is critical for many applications of optical frequency comb bas...
Optical frequency combs based on erbium-doped fiber lasers are attractive tools in precision metrolo...
Carrier-envelope and optical phase noise of a femtosecond frequency comb based on Er-doped fiber tec...
In this Letter, we demonstrate a fully stabilized Er: fiber frequency comb by using a fiber-based, h...
A passively phase-locked laser source based on compact femtosecond Er:fiber technology is introduced...
Citation: Droste, S., Ycas, G., Washburn, B. R., Coddington, I., & Newbury, N. R. (2016). Optical Fr...
International audienceWe present here a detailed investigation of a commercial-core Erbium-doped fib...
International audienceWe have demonstrated the first fully stabilized frequency comb generated by an...
We present a multibranch laser frequency comb based upon a 250 MHz mode-locked erbium-doped fiber la...
International audienceMode-locked femtosecond lasers have revolutionized the field of optical metrol...
We demonstrate a new phase-locking technique for long-term and high-precision stabilization of mode-...
In this letter, we demonstrate frequency-comb-based multiple-access ultrastable frequency disseminat...
We present full phase stabilization of an amplified Yb:fiber femtosecond frequency comb using an int...
Recent developments in stabilized lasers have resulted in ultrastable optical oscillators with spect...
It is the inevitable trend of the development for the optical frequency comb based on the Ti: sapphi...
A fully stabilized soliton microcomb is critical for many applications of optical frequency comb bas...
Optical frequency combs based on erbium-doped fiber lasers are attractive tools in precision metrolo...
Carrier-envelope and optical phase noise of a femtosecond frequency comb based on Er-doped fiber tec...
In this Letter, we demonstrate a fully stabilized Er: fiber frequency comb by using a fiber-based, h...
A passively phase-locked laser source based on compact femtosecond Er:fiber technology is introduced...
Citation: Droste, S., Ycas, G., Washburn, B. R., Coddington, I., & Newbury, N. R. (2016). Optical Fr...
International audienceWe present here a detailed investigation of a commercial-core Erbium-doped fib...
International audienceWe have demonstrated the first fully stabilized frequency comb generated by an...
We present a multibranch laser frequency comb based upon a 250 MHz mode-locked erbium-doped fiber la...
International audienceMode-locked femtosecond lasers have revolutionized the field of optical metrol...
We demonstrate a new phase-locking technique for long-term and high-precision stabilization of mode-...
In this letter, we demonstrate frequency-comb-based multiple-access ultrastable frequency disseminat...
We present full phase stabilization of an amplified Yb:fiber femtosecond frequency comb using an int...
Recent developments in stabilized lasers have resulted in ultrastable optical oscillators with spect...
It is the inevitable trend of the development for the optical frequency comb based on the Ti: sapphi...
A fully stabilized soliton microcomb is critical for many applications of optical frequency comb bas...