We report on the characterization of two fiber-coupled 1.5- μm diode lasers, frequency-doubled and stabilized to Rubidium (Rb) atomic resonances at 780 nm. Such laser systems are of interest in view of their implementation in Rb vaporcell atomic clocks, as an alternative to lasers emitting directly at 780 nm. The spectral properties and the instabilities of the frequency-doubled lasers are evaluated against a state-of-the-art compact Rb-stabilized laser system based on a distributed-feedback laser diode emitting at 780 nm. All three lasers are frequency stabilized using essentially identical Doppler-free spectroscopy schemes. The long-term optical power fluctuations at 780 nm are measured, simultaneously with the frequency instability measu...
International audienceSummary form only given. State-of-the-art optical atomic clocks have attained ...
We describe a frequency-doubled, stabilized, diode-pumped solid-state Nd:YLF laser at 657 nm, propos...
International audienceWe describe an efficient continuous-wave diode-pumped Nd:YLiF4 laser oscillati...
We employ a recently developed laser system, based on a low-noise telecom laser emitting around 1.56...
We present our recently experimental results on a DFB laser diode pumped Rubidium atomic frequency s...
We present our recently experimental results on a DFB laser diode pumped Rubidium atomic frequency s...
Many nowadays scientific and technological applications need very precise time and frequency referen...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Aeronautics and Astronautics, J...
Since the advent of the laser, more than forty years ago, the development of narrow-band single-freq...
We report the efficient operation of a continuous-wave, single-frequency, diode-pumped Nd:FAP laser ...
In this paper, we present the performance of a vapor-cell rubidium frequency standard working in the...
In this paper, we present the performance of a vapor-cell rubidium frequency standard working in the...
International audienceSummary form only given. State-of-the-art optical atomic clocks have attained ...
We have developed a compact rubidium-stabilized laser system to serve as optical frequency reference...
Combining light modulation and frequency conversion techniques, a compact and simple frequency-stabi...
International audienceSummary form only given. State-of-the-art optical atomic clocks have attained ...
We describe a frequency-doubled, stabilized, diode-pumped solid-state Nd:YLF laser at 657 nm, propos...
International audienceWe describe an efficient continuous-wave diode-pumped Nd:YLiF4 laser oscillati...
We employ a recently developed laser system, based on a low-noise telecom laser emitting around 1.56...
We present our recently experimental results on a DFB laser diode pumped Rubidium atomic frequency s...
We present our recently experimental results on a DFB laser diode pumped Rubidium atomic frequency s...
Many nowadays scientific and technological applications need very precise time and frequency referen...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Aeronautics and Astronautics, J...
Since the advent of the laser, more than forty years ago, the development of narrow-band single-freq...
We report the efficient operation of a continuous-wave, single-frequency, diode-pumped Nd:FAP laser ...
In this paper, we present the performance of a vapor-cell rubidium frequency standard working in the...
In this paper, we present the performance of a vapor-cell rubidium frequency standard working in the...
International audienceSummary form only given. State-of-the-art optical atomic clocks have attained ...
We have developed a compact rubidium-stabilized laser system to serve as optical frequency reference...
Combining light modulation and frequency conversion techniques, a compact and simple frequency-stabi...
International audienceSummary form only given. State-of-the-art optical atomic clocks have attained ...
We describe a frequency-doubled, stabilized, diode-pumped solid-state Nd:YLF laser at 657 nm, propos...
International audienceWe describe an efficient continuous-wave diode-pumped Nd:YLiF4 laser oscillati...