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20242026
most citedClocking and controlling attosecond currents in a scanning tunnelling microscope

1 citations · 1 across the 1 of their papers we have counts for

collaborators

6 papers

quant-ph20261 cited

Clocking and controlling attosecond currents in a scanning tunnelling microscope

Daniel Davidovich, Boyang Ma, Adi Goldner +4

Quantum tunnelling of electrons can be confined to the sub-cycle time scale of strong light fields, contributing decisively to the extreme time resolution of attosecond science. Be…

physics.optics2026

Two-color harmonic spectroscopy of ultrafast Dirac electron dynamics

Zhaopin Chen, Camilo Granados, Eyal Uzner +5

High-harmonic generation (HHG), the hallmark effect of attosecond science, is a nonperturbative nonlinear process leading to the emission of high-harmonic light from gases and soli…

physics.optics2025

Single-shot pulse retrieval of femtosecond bright squeezed vacuum

Yuval Kern, Ido Nisim, Michael Birk +7

Bright squeezed vacuum (BSV) is an intense quantum state of light with zero mean electric field and huge photon number fluctuations, sufficiently intense to drive extreme nonlinear…

cond-mat.mes-hall2025

Robust strong-field theory model for ultrafast electron transport through metal-insulator-metal tunneling nanojunctions

Boyang Ma, Michael Krüger

Ultrafast science studies the dynamics of electrons in matter with extreme temporal precision, typically in the attosecond and femtosecond time domain. Recent experimental and theo…

quant-ph2025

Squeezed states of light after high-harmonic generation in excited atomic systems

J. Rivera-Dean, H. B. Crispin, P. Stammer +6

High-harmonic generation (HHG) has recently emerged as a promising method for generating non-classical states of light with frequencies spanning from the infrared up to the extreme…

physics.optics2024

Attosecond pulses from a solid driven by a synthesized two-color field at megahertz repetition rate

Zhaopin Chen, Mark Levit, Yuval Kern +3

Probing coherent quantum dynamics in light-matter interactions at the microscopic level requires high-repetition-rate isolated attosecond pulses (IAPs) in pump-probe experiments. T…