Third-generation femtosecond technology
Femtosecond pulse generation was pioneered four decades ago using mode-locked dye
lasers, which dominated the field for the following 20 years. Dye lasers were then replaced …
lasers, which dominated the field for the following 20 years. Dye lasers were then replaced …
Coherent pulse synthesis: towards sub‐cycle optical waveforms
The generation of sub‐optical‐cycle, carrier–envelope phase‐stable light pulses is one of
the frontiers of ultrafast optics. The two key ingredients for sub‐cycle pulse generation are …
the frontiers of ultrafast optics. The two key ingredients for sub‐cycle pulse generation are …
53 W average power CEP-stabilized OPCPA system delivering 5.5 TW few cycle pulses at 1 kHz repetition rate
R Budriūnas, T Stanislauskas, J Adamonis… - Optics express, 2017 - opg.optica.org
We present a high peak and average power optical parametric chirped pulse amplification
system driven by diode-pumped Yb: KGW and Nd: YAG lasers running at 1 kHz repetition …
system driven by diode-pumped Yb: KGW and Nd: YAG lasers running at 1 kHz repetition …
Frequency domain optical parametric amplification
Today's ultrafast lasers operate at the physical limits of optical materials to reach extreme
performances. Amplification of single-cycle laser pulses with their corresponding octave …
performances. Amplification of single-cycle laser pulses with their corresponding octave …
Electro-optic sampling of near-infrared waveforms
Access to the complete electric field evolution of a laser pulse is essential for attosecond
science in general, and for the scrutiny and control of electron phenomena in solid-state …
science in general, and for the scrutiny and control of electron phenomena in solid-state …
Attosecond optics and technology: progress to date and future prospects
The milestones of attosecond optics research in the last 15 years are briefly reviewed, and
the latest trends in applications in gaseous and condensed matter are introduced. An …
the latest trends in applications in gaseous and condensed matter are introduced. An …
[PDF][PDF] Table-top optical parametric chirped pulse amplifiers: past and present
A Dubietis, A Matijošius - Opto-Electron. Adv., 2023 - researching.cn
The generation of power-and wavelength-scalable few optical cycle pulses remains one of
the major challenges in modern laser physics. Over the past decade, the development of …
the major challenges in modern laser physics. Over the past decade, the development of …
[HTML][HTML] 0.42 TW 2-cycle pulses at 1.8 μm via hollow-core fiber compression
By employing pulse compression with a stretched hollow-core fiber, we generated 2-cycle
pulses at 1.8 μm (12 fs) carrying 5 mJ of pulse energy at 100 Hz repetition rate. This energy …
pulses at 1.8 μm (12 fs) carrying 5 mJ of pulse energy at 100 Hz repetition rate. This energy …
High-efficiency optical parametric chirped-pulse amplifier in BiB3O6 for generation of 3 mJ, two-cycle, carrier-envelope-phase-stable pulses at 1.7 μm
We produce a 3 mJ, two-cycle (11.4 fs), 1 kHz, carrier-envelope phase (CEP)-stable laser
source at 1.7 μm via a three-stage Ti: sapphire-pumped optical parametric chirped-pulse …
source at 1.7 μm via a three-stage Ti: sapphire-pumped optical parametric chirped-pulse …
Intense infrared lasers for strong-field science
Z Chang, L Fang, V Fedorov, C Geiger… - Advances in Optics …, 2022 - opg.optica.org
The advent of chirped-pulse amplification in the 1980s and femtosecond Ti: sapphire lasers
in the 1990s enabled transformative advances in intense laser–matter interaction physics …
in the 1990s enabled transformative advances in intense laser–matter interaction physics …