Single-shot real-time characterization of optical waveforms with sub-picosecond resolution is essential for investigating various ultrafast optical dynamics. However, the finite temporal recording length of current techniques hinders comprehensive understanding of many intriguing ultrafast optical phenomena that evolve over a timescale much longer than their fine temporal details. Inspired by the space-time duality and by stitching of multiple microscopic images to achieve a larger field of view in the spatial domain, here a panoramic-reconstruction temporal imaging (PARTI) system is devised to scale up the temporal recording length without sacrificing the resolution. As a proof-of-concept demonstration, the PARTI system is applied to study...
International audienceSince the first demonstration of Kerr lens modelocked Ti:sapphire laser in 199...
International audienceSince the first demonstration of Kerr lens modelocked Ti:sapphire laser in 199...
International audienceWe describe a method to visualize ultrafast laser-induced refractive index cha...
Single-shot real-time characterization of optical waveforms with sub-picosecond resolution is essent...
Single-shot real-time characterization of optical waveforms with sub-picosecond resolution is essent...
Solitons are self-sustained wavepackets that occur in many physical systems. Their recent demonstrat...
We have demonstrated a system for the temporal expansion of arbitrarily shaped ultrafast optical wav...
Dissipative solitons are remarkable localized states of a physical system that arise from the dynami...
We present a holographic recording technique with 150 femtosecond time resolution. This technique al...
International audienceDissipative solitons are remarkably localized states of a physical system that...
International audienceDissipative solitons are remarkably localized states of a physical system that...
International audienceMode‐locked lasers exhibit a rich landscape of unstable dissipative soliton dy...
International audienceMode‐locked lasers exhibit a rich landscape of unstable dissipative soliton dy...
International audienceMode‐locked lasers exhibit a rich landscape of unstable dissipative soliton dy...
<p>Real-time spectroscopy access to ultrafast fiber lasers opens new opportunities for exploring com...
International audienceSince the first demonstration of Kerr lens modelocked Ti:sapphire laser in 199...
International audienceSince the first demonstration of Kerr lens modelocked Ti:sapphire laser in 199...
International audienceWe describe a method to visualize ultrafast laser-induced refractive index cha...
Single-shot real-time characterization of optical waveforms with sub-picosecond resolution is essent...
Single-shot real-time characterization of optical waveforms with sub-picosecond resolution is essent...
Solitons are self-sustained wavepackets that occur in many physical systems. Their recent demonstrat...
We have demonstrated a system for the temporal expansion of arbitrarily shaped ultrafast optical wav...
Dissipative solitons are remarkable localized states of a physical system that arise from the dynami...
We present a holographic recording technique with 150 femtosecond time resolution. This technique al...
International audienceDissipative solitons are remarkably localized states of a physical system that...
International audienceDissipative solitons are remarkably localized states of a physical system that...
International audienceMode‐locked lasers exhibit a rich landscape of unstable dissipative soliton dy...
International audienceMode‐locked lasers exhibit a rich landscape of unstable dissipative soliton dy...
International audienceMode‐locked lasers exhibit a rich landscape of unstable dissipative soliton dy...
<p>Real-time spectroscopy access to ultrafast fiber lasers opens new opportunities for exploring com...
International audienceSince the first demonstration of Kerr lens modelocked Ti:sapphire laser in 199...
International audienceSince the first demonstration of Kerr lens modelocked Ti:sapphire laser in 199...
International audienceWe describe a method to visualize ultrafast laser-induced refractive index cha...