Observation of interband Berry phase in laser-driven crystals

Author:

Uzan-Narovlansky Ayelet J.ORCID,Faeyrman Lior,Brown Graham G.,Shames Sergei,Narovlansky Vladimir,Xiao Jiewen,Arusi-Parpar Talya,Kneller OmerORCID,Bruner Barry D.ORCID,Smirnova OlgaORCID,Silva Rui E. F.,Yan BinghaiORCID,Jiménez-Galán Álvaro,Ivanov MishaORCID,Dudovich NiritORCID

Abstract

AbstractEver since its discovery1, the notion of the Berry phase has permeated all branches of physics and plays an important part in a variety of quantum phenomena2. However, so far all its realizations have been based on a continuous evolution of the quantum state, following a cyclic path. Here we introduce and demonstrate a conceptually new manifestation of the Berry phase in light-driven crystals, in which the electronic wavefunction accumulates a geometric phase during a discrete evolution between different bands, while preserving the coherence of the process. We experimentally reveal this phase by using a strong laser field to engineer an internal interferometer, induced during less than one cycle of the driving field, which maps the phase onto the emission of higher-order harmonics. Our work provides an opportunity for the study of geometric phases, leading to a variety of observations in light-driven topological phenomena and attosecond solid-state physics.

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

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