Strong-field effects induced in the extreme ultraviolet domain
Ioannis Makos, Ioannis Orfanos, E. Skantzakis, I. Liontos, P. Tzallas, Andrew Forembski, L. A. A. Nikolopoulos, D. Charalambidis
Abstract
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Ioannis Makos, Ioannis Orfanos, E. Skantzakis, I. Liontos, P. Tzallas, Andrew Forembski, L. A. A. Nikolopoulos, D. Charalambidis
Abstract
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Abstract Motivated by the achieved high intensities of novel extreme ultraviolet (XUV) radiation sources, such as free electron lasers and laser-driven high harmonic generation beamlines, we elaborate on their perspective in inducing observable strong field effects. The feasibility of extending such effects from the infrared and visible spectral regimes in the XUV domain is supported through numerically calculated models of near-future experiments. We highlight the advancement of performing studies in the time domain, using ultra-short XUV pulses, which allows for the temporal evolution of such effects to be followed. Experimental and theoretical obstacles and limitations are further discussed.
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Abstract Motivated by the achieved high intensities of novel extreme ultraviolet (XUV) radiation sources, such as free electron lasers and laser-driven high harmonic generation beamlines, we elaborate on their perspective in inducing observable strong field effects. The feasibility of extending such effects from the infrared and visible spectral regimes in the XUV domain is supported through numerically calculated models of near-future experiments. We highlight the advancement of performing studies in the time domain, using ultra-short XUV pulses, which allows for the temporal evolution of such effects to be followed. Experimental and theoretical obstacles and limitations are further discussed.
Key concepts: Extreme ultraviolet, High harmonic generation, Laser, Ultraviolet, Physics, Observable, Field (mathematics), Radiation