Scinovex
article Open AccessTop 1% cited

Attosecond physics

Reviews of Modern Physics · 2009 · Vol. 81(1) · pp. 163–234
Ferenc KrauszMisha Ivanov

Abstract

Intense ultrashort light pulses comprising merely a few wave cycles became routinely available by the turn of the millennium. The technologies underlying their production and measurement as well as relevant theoretical modeling have been reviewed in the pages of Reviews of Modern Physics (Brabec and Krausz, 2000). Since then, measurement and control of the subcycle field evolution of few-cycle light have opened the door to a radically new approach to exploring and controlling processes of the microcosm. The hyperfast-varying electric field of visible light permitted manipulation and tracking of the atomic-scale motion of electrons. Striking implications include controlled generation and measurement of single attosecond pulses of extreme ultraviolet light as well as trains of them, and real-time observation of atomic-scale electron dynamics. The tools and techniques for steering and tracing electronic motion in atoms, molecules, and nanostructures are now becoming available, marking the birth of attosecond physics. In this article these advances are reviewed and some of the expected implications are addressed.

Laser-Matter Interactions and ApplicationsAdvanced Fiber Laser TechnologiesSpectroscopy and Quantum Chemical StudiesAttosecondPhysicsExtreme ultravioletTracking (education)Field (mathematics)OpticsEngineering physicsUltrashort pulseLaser

Funding

  • Natural Sciences and Engineering Research Council of Canada
Citations
5,224
FWCI
190.23
field-weighted impact
References
745
Percentile
100%
vs. same field & year
Citations per year
Cited by
Control of quantum phenomena: past, present and future
New Journal of Physics · 2010 · 869 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.

Attosecond physics · Scinovex