arXiv Open Access 2022

Parametric Waveform Synthesis: a scalable approach to generate sub-cycle optical transients

Roland E. Mainz Giulio Maria Rossi Fabian Scheiba Miguel A. Silva-Toledo Giovanni Cirmi +1 lainnya
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Abstrak

The availability of electromagnetic pulses with controllable field waveform and extremely short duration, even below a single optical cycle, is imperative to fully harness strong-field processes and to gain insight into ultrafast light-driven mechanisms occurring in the attosecond time-domain. The recently demonstrated parametric waveform synthesis (PWS) introduces an energy-, power- and spectrum-scalable method to generate non-sinusoidal sub-cycle optical waveforms by coherently combining different phase-stable pulses attained via optical parametric amplifiers. Significant technological developments have been addressed to overcome the stability issues related to PWS and to obtain an effective and reliable waveform control system. Here we present the main ingredients enabling PWS technology. The design choices concerning the optical, mechanical and electronic setups are justified by analytical/numerical modeling and benchmarked by experimental observations. In its present incarnation, the PWS technology enables the generation of field-controllable mJ-level few-femtosecond pulses spanning the visible to infrared range.

Topik & Kata Kunci

Penulis (6)

R

Roland E. Mainz

G

Giulio Maria Rossi

F

Fabian Scheiba

M

Miguel A. Silva-Toledo

G

Giovanni Cirmi

F

Franz X. Kärtner

Format Sitasi

Mainz, R.E., Rossi, G.M., Scheiba, F., Silva-Toledo, M.A., Cirmi, G., Kärtner, F.X. (2022). Parametric Waveform Synthesis: a scalable approach to generate sub-cycle optical transients. https://arxiv.org/abs/2208.00899

Akses Cepat

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Informasi Jurnal
Tahun Terbit
2022
Bahasa
en
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arXiv
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Open Access ✓