Coherent pulse synthesis: towards sub‐cycle optical waveforms

C Manzoni, OD Mücke, G Cirmi, S Fang… - Laser & Photonics …, 2015 - Wiley Online Library
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 …

Few‐optical‐cycle light pulses with passive carrier‐envelope phase stabilization

G Cerullo, A Baltuška, OD Mücke… - Laser & Photonics …, 2011 - Wiley Online Library
One of the most advanced frontiers of ultrafast optics is the control of carrier‐envelope phase
(CEP) ϕ of light pulses, which enables the generation of optical waveforms with …

Phase-locked generation and field-resolved detection of widely tunable terahertz pulses with amplitudes exceeding 100 MV/cm

A Sell, A Leitenstorfer, R Huber - Optics letters, 2008 - opg.optica.org
Phase-locked terahertz transients with peak electric fields of 108 MV/cm and center
frequencies continuously tunable from 10 to 72 THz are generated via difference-frequency …

7 μm, ultrafast, sub-millijoule-level mid-infrared optical parametric chirped pulse amplifier pumped at 2 μm

D Sanchez, M Hemmer, M Baudisch, SL Cousin… - Optica, 2016 - opg.optica.org
We present a novel all-fiber pumped optical parametric chirped pulse amplifier (OPCPA)
architecture to generate self-carrier-to-envelope-phase stable, sub-eight-optical-cycle …

[图书][B] Extreme nonlinear optics: an introduction

M Wegener - 2006 - books.google.com
Following the birth of the laser in 1960, the field of" nonlinear optics" rapidly emerged.
Today, laser intensities and pulse durations are readily available, for which the concepts …

Ultrabroadband detection of multi-terahertz field transients with GaSe electro-optic sensors: Approaching the near infrared

C Kübler, R Huber, S Tübel, A Leitenstorfer - Applied physics letters, 2004 - pubs.aip.org
Field-resolved detection of ultrabroadband infrared pulses is implemented with GaSe
crystals. Via phase matching, we extend the detectable frequency range toward the near …

Carrier-envelope-phase-stable, 1.2 mJ, 1.5 cycle laser pulses at 2.1 μm

Y Deng, A Schwarz, H Fattahi, M Ueffing, X Gu… - Optics letters, 2012 - opg.optica.org
We produce 1.5 cycle (10.5 fs), 1.2 mJ, 3 kHz carrier-envelope-phase-stable pulses at 2.1
μm carrier wavelength, from a three-stage optical parametric chirped-pulse amplifier system …

[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 …

New frontiers in attosecond science

M Nisoli, G Sansone - Progress in Quantum Electronics, 2009 - Elsevier
We review recent advances in attosecond science; particular attention is devoted to the
generation, temporal characterization and applications of isolated attosecond pulses. After a …

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 …