2018Journal of the Optical Society of America BRequires access

Ultrastable collinear delay control setup for attosecond IR-XUV pump–probe experiment

A. Zaïr, E. Mével, E. Cormier, E. Constant

Open publisher page 12 citations

Abstract

We present a robust experimental design for performing time-resolved measurement with IR femtosecond laser pulses and attosecond extreme ultraviolet (XUV) pulses. The setup contains no reflective optical elements and provides an IR-XUV delay control down to 5 attoseconds without any active stabilization. Temporal characterization of an attosecond XUV pulse train generated in krypton is presented here to demonstrate the validity of our approach.

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What this paper is about

We present a robust experimental design for performing time-resolved measurement with IR femtosecond laser pulses and attosecond extreme ultraviolet (XUV) pulses. The setup contains no reflective optical elements and provides an IR-XUV delay control down to 5 attoseconds without any active stabilization. Temporal characterization of an attosecond XUV pulse train generated in krypton is presented here to demonstrate the validity of our approach.

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Available abstract

We present a robust experimental design for performing time-resolved measurement with IR femtosecond laser pulses and attosecond extreme ultraviolet (XUV) pulses. The setup contains no reflective optical elements and provides an IR-XUV delay control down to 5 attoseconds without any active stabilization. Temporal characterization of an attosecond XUV pulse train generated in krypton is presented here to demonstrate the validity of our approach.

Key concepts: Attosecond, Extreme ultraviolet, Femtosecond, Laser, Optics, Physics, Krypton, Ultraviolet

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