activity
20152020
most citedCompact 200 kHz HHG source driven by a few-cycle OPCPA

70 citations · 121 across the 8 of their papers we have counts for

collaborators

11 papers

physics.atom-ph2020

A high-repetition rate attosecond light source for time-resolved coincidencespectroscopy

Sara Mikaelsson, Jan Vogelsang, Chen Guo +12

Attosecond pulses, produced through high-order harmonic generation in gases, have been successfully used for observing ultrafast, sub-femtosecond electron dynamics in atoms, molecu…

physics.optics2020

Post-compression of picosecond pulses into the few-cycle regime

Prannay Balla, Ammar Bin Wahid, Ivan Sytcevich +18

In this work, we demonstrate post-compression of 1.2 picosecond laser pulses to 13 fs via gas-based multi-pass spectral broadening. Our results yield a single-stage compression fac…

physics.optics2020

Few-cycle lightwave-driven currents in a semiconductor at high repetition rate

Fabian Langer, Yen-Po Liu, Zhe Ren +9

When an intense, few-cycle light pulse impinges on a dielectric or semiconductor material, the electric field will interact nonlinearly with the solid, driving a coherent current.…

physics.chem-ph2019

Attosecond timing of electron emission from a molecular shape resonance

S. Nandi, E. Plésiat, S. Zhong +11

Shape resonances in physics and chemistry arise from the spatial confinement of a particle by a potential barrier. In molecular photoionization, these barriers prevent the electron…

physics.atom-ph2019

Controlling the Photoelectric Effect in the Time Domain

Yu-Chen Cheng, Sara Mikaelsson, Saikat Nandi +9

When an atom or molecule absorbs a high-energy photon, an electron is emitted with a well-defined energy and a highly-symmetric angular distribution, ruled by energy quantization a…

physics.optics201918 cited

Spatial Control of Multiphoton Electron Excitations in InAs Nanowires by Varying Crystal Phase and Light Polarization

Erik Mårsell, Emil Boström, Anne Harth +14

We demonstrate the control of multiphoton electron excitations in InAs nanowires (NWs) by altering the crystal structure and the light polarization. Using few-cycle, near-infrared…