This paper reviews the use of frequency-resolved optical gating (FROG) to characterize mode-locked lasers producing ultrashort pulses suitable for high-capacity optical communications systems at wavelengths around 1550 nm, Second harmonic generation (SHG) FROG is used to characterize pulses from a passively mode-locked erbium-doped fiber laser, and both single-mode and dual-mode gain-switched semiconductor lasers. The compression of gain-switched pulses in dispersion compensating fiber is also studied using SHG-FROG, allowing optimal compression conditions to be determined without a priori assumptions about pulse characteristics. We also describe a fiber-based FROG geometry exploiting cross-phase modulation and show that it is ideally suite...
The authors demonstrate the generation of short optical pulses, which display spectral sidemode supp...
In the past several decades the technology for the creation and use of ultrashort pulses has progres...
[[abstract]]We discuss ultralow-power second-harmonic generation (SHG) frequency-resolved optical ga...
This paper reviews the use of frequency-resolved optical gating (FROG) to characterize mode-locked l...
Accurate phase and amplitude characterization is essential for many ultrashort-pulse applications. B...
The characteristics of 40-Gbit/s pulses generated by exploiting the nonlinear characteristics of a M...
Accurate phase and amplitude characterization is essential for many ultrashort-pulse applications. B...
The problem of measuring broad-band femtosecond pulses by the technique of second-harmonic generatio...
The intensity and frequency chirp of picosecond pulses from a self-seeded gain-switched Fabry-Perot ...
In this chapter, we developed the theory of frequency-resolved optical gating (FROG) in the few-cycl...
In this chapter, we developed the theory of frequency-resolved optical gating (FROG) in the few-cycl...
[[abstract]]We retrieve intensity and phase profiles of few hundred femtosecond optical pulses at 6 ...
International audienceWe analyze experimentally the sensitivity of second-harmonic generation freque...
The authors demonstrate the generation of short optical pulses, which display spectral sidemode supp...
In the past several decades the technology for the creation and use of ultrashort pulses has progres...
[[abstract]]We discuss ultralow-power second-harmonic generation (SHG) frequency-resolved optical ga...
This paper reviews the use of frequency-resolved optical gating (FROG) to characterize mode-locked l...
Accurate phase and amplitude characterization is essential for many ultrashort-pulse applications. B...
The characteristics of 40-Gbit/s pulses generated by exploiting the nonlinear characteristics of a M...
Accurate phase and amplitude characterization is essential for many ultrashort-pulse applications. B...
The problem of measuring broad-band femtosecond pulses by the technique of second-harmonic generatio...
The intensity and frequency chirp of picosecond pulses from a self-seeded gain-switched Fabry-Perot ...
In this chapter, we developed the theory of frequency-resolved optical gating (FROG) in the few-cycl...
In this chapter, we developed the theory of frequency-resolved optical gating (FROG) in the few-cycl...
[[abstract]]We retrieve intensity and phase profiles of few hundred femtosecond optical pulses at 6 ...
International audienceWe analyze experimentally the sensitivity of second-harmonic generation freque...
The authors demonstrate the generation of short optical pulses, which display spectral sidemode supp...
In the past several decades the technology for the creation and use of ultrashort pulses has progres...
[[abstract]]We discuss ultralow-power second-harmonic generation (SHG) frequency-resolved optical ga...