Weak measurement in strong laser field physics

Fuente: arXiv
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Main Authors: Stammer, Philipp, Rivera-Dean, Javier, Ciappina, Marcelo F., Lewenstein, Maciej
Format: Preprint
Published: 2025
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author Stammer, Philipp
Rivera-Dean, Javier
Ciappina, Marcelo F.
Lewenstein, Maciej
author_facet Stammer, Philipp
Rivera-Dean, Javier
Ciappina, Marcelo F.
Lewenstein, Maciej
contents The advantage of attosecond measurements is the possibility of time-resolving ultrafast quantum phenomena of electron dynamics. Many such measurements are of interferometric nature, and therefore give access to the phase. Likewise, weak measurements are intrinsically interferometric and specifically take advantage of interfering probability amplitudes, therefore encoding the phase information of the process. In this work, we show that attosecond interferometry experiments can be seen as a weak measurement, which unveils how this notion is connected to strong field physics and attosecond science. In particular, we show how the electron trajectory picks up a new phase, which occurs due to the weak measurement of the process. This phase can show significant contributions in the presence of spectral features of the measured system. Furthermore, extending this approach to include non-classical driving fields shows that the generated harmonics exhibit non-trivial features in their quantum state and photon statistics. This opens the path towards investigations of attosecond quantum interferometry experiments.
format Preprint
id arxiv_https___arxiv_org_abs_2508_09048
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Weak measurement in strong laser field physics
Stammer, Philipp
Rivera-Dean, Javier
Ciappina, Marcelo F.
Lewenstein, Maciej
Quantum Physics
Optics
The advantage of attosecond measurements is the possibility of time-resolving ultrafast quantum phenomena of electron dynamics. Many such measurements are of interferometric nature, and therefore give access to the phase. Likewise, weak measurements are intrinsically interferometric and specifically take advantage of interfering probability amplitudes, therefore encoding the phase information of the process. In this work, we show that attosecond interferometry experiments can be seen as a weak measurement, which unveils how this notion is connected to strong field physics and attosecond science. In particular, we show how the electron trajectory picks up a new phase, which occurs due to the weak measurement of the process. This phase can show significant contributions in the presence of spectral features of the measured system. Furthermore, extending this approach to include non-classical driving fields shows that the generated harmonics exhibit non-trivial features in their quantum state and photon statistics. This opens the path towards investigations of attosecond quantum interferometry experiments.
title Weak measurement in strong laser field physics
topic Quantum Physics
Optics
url https://arxiv.org/abs/2508.09048