Abstract. : We demonstrate a novel scalable and engineerable approach for the frequency-doubling of ultrashort pulses. Our technique is based on quasi-phase-matching and simultaneously provides tailored dispersion and nonlinear frequency conversion of few-cycle optical pulses. The method makes use of the spatial localization of the conversion process and the group velocity mismatch in a chirped grating structure. The total group delay of the nonlinear device can be designed to generate nearly arbitrarily chirped second-harmonic pulses from positively or negatively chirped input pulses. In particular, compressed second-harmonic pulses can be obtained. A brief summary of the underlying theory is presented, followed by a detailed discussion of...
We develop a rapid and efficient numeric technique for the design of arbitrary quasi-phase matched l...
We demonstrate for the first time nonresonant phase-matched frequency conversion of ultrashort pulse...
We exploit second-harmonic generation with large group velocity mismatch to efficiently convert femt...
We numerically design quasi-phase matched crystals with domains of arbitrary sizes for second harmon...
We numerically design quasi-phase matched crystals with domains of arbitrary sizes for second harmon...
We demonstrate generation of two synchronized picosecond pulses at different wavelengths near 778 nm...
We introduce a simple approach for the efficient generation of tunable narrow-bandwidth picosecond p...
[EN]The chirped pulse amplification (CPA) technique applied to Titanium Sapphire lasers has made int...
We numerically design quasi-phase matched crystals with domains of arbitrary sizes for second harmon...
We numerically design quasi-phase matched crystals with domains of arbitrary sizes for second harmon...
l. gallmann1,✉ g. steinmeyer1 g. imeshev2,∗ j.-p. meyn3 m.m. fejer2 u. keller1 Sub-6-fs blue pulses ...
We demonstrate generation, spectral broadening, and post-compression of ultraviolet pulses using a t...
The problem of measuring broad-band femtosecond pulses by the technique of second-harmonic generatio...
The problem of measuring broad-band femtosecond pulses by the technique of second-harmonic generatio...
We introduce a simple approach for the efficient generation of tunable narrow-bandwidth picosecond p...
We develop a rapid and efficient numeric technique for the design of arbitrary quasi-phase matched l...
We demonstrate for the first time nonresonant phase-matched frequency conversion of ultrashort pulse...
We exploit second-harmonic generation with large group velocity mismatch to efficiently convert femt...
We numerically design quasi-phase matched crystals with domains of arbitrary sizes for second harmon...
We numerically design quasi-phase matched crystals with domains of arbitrary sizes for second harmon...
We demonstrate generation of two synchronized picosecond pulses at different wavelengths near 778 nm...
We introduce a simple approach for the efficient generation of tunable narrow-bandwidth picosecond p...
[EN]The chirped pulse amplification (CPA) technique applied to Titanium Sapphire lasers has made int...
We numerically design quasi-phase matched crystals with domains of arbitrary sizes for second harmon...
We numerically design quasi-phase matched crystals with domains of arbitrary sizes for second harmon...
l. gallmann1,✉ g. steinmeyer1 g. imeshev2,∗ j.-p. meyn3 m.m. fejer2 u. keller1 Sub-6-fs blue pulses ...
We demonstrate generation, spectral broadening, and post-compression of ultraviolet pulses using a t...
The problem of measuring broad-band femtosecond pulses by the technique of second-harmonic generatio...
The problem of measuring broad-band femtosecond pulses by the technique of second-harmonic generatio...
We introduce a simple approach for the efficient generation of tunable narrow-bandwidth picosecond p...
We develop a rapid and efficient numeric technique for the design of arbitrary quasi-phase matched l...
We demonstrate for the first time nonresonant phase-matched frequency conversion of ultrashort pulse...
We exploit second-harmonic generation with large group velocity mismatch to efficiently convert femt...