Single-pulse terahertz spectroscopy monitoring sub-millisecond time dynamics at a rate of 50 kHz

Author:

Couture NicolasORCID,Cui Wei,Lippl MarkusORCID,Ostic RachelORCID,Fandio Défi Junior JubgangORCID,Yalavarthi Eeswar Kumar,Vishnuradhan Aswin,Gamouras AngelaORCID,Joly Nicolas Y.,Ménard Jean-MichelORCID

Abstract

AbstractSlow motion movies allow us to see intricate details of the mechanical dynamics of complex phenomena. If the images in each frame are replaced by terahertz (THz) waves, such movies can monitor low-energy resonances and reveal fast structural or chemical transitions. Here, we combine THz spectroscopy as a non-invasive optical probe with a real-time monitoring technique to demonstrate the ability to resolve non-reproducible phenomena at 50k frames per second, extracting each of the generated THz waveforms every 20 μs. The concept, based on a photonic time-stretch technique to achieve unprecedented data acquisition speeds, is demonstrated by monitoring sub-millisecond dynamics of hot carriers injected in silicon by successive resonant pulses as a saturation density is established. Our experimental configuration will play a crucial role in revealing fast irreversible physical and chemical processes at THz frequencies with microsecond resolution to enable new applications in fundamental research as well as in industry.

Funder

Max Planck Institute for the Science of Light

Gouvernement du Canada | Natural Sciences and Engineering Research Council of Canada

Joint Centre for Extreme Photonics

Gouvernement du Canada | National Research Council Canada

Canada Foundation for Innovation

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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