Attosecond optoelectronic field measurement in solids

Author:

Sederberg Shawn,Zimin Dmitry,Keiber Sabine,Siegrist Florian,Wismer Michael S.,Yakovlev Vladislav S.ORCID,Floss Isabella,Lemell ChristophORCID,Burgdörfer Joachim,Schultze MartinORCID,Krausz Ferenc,Karpowicz Nicholas

Abstract

AbstractThe sub-cycle interaction of light and matter is one of the key frontiers of inquiry made accessible by attosecond science. Here, we show that when light excites a pair of charge carriers inside of a solid, the transition probability is strongly localized to instants slightly after the extrema of the electric field. The extreme temporal localization is utilized in a simple electronic circuit to record the waveforms of infrared to ultraviolet light fields. This form of petahertz-bandwidth field metrology gives access to both the modulated transition probability and its temporal offset from the laser field, providing sub-fs temporal precision in reconstructing the sub-cycle electronic response of a solid state structure.

Publisher

Springer Science and Business Media LLC

Subject

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

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