Single-cycle infrared waveform control
P Steinleitner, N Nagl, M Kowalczyk, J Zhang… - Nature …, 2022 - nature.com
Tailoring the electric-field waveform of ultrashort light pulses forms the basis for controlling
nonlinear optical phenomena on their genuine, attosecond timescale. Here we extend …
nonlinear optical phenomena on their genuine, attosecond timescale. Here we extend …
Light-field control of real and virtual charge carriers
Light-driven electronic excitation is a cornerstone for energy and information transfer. In the
interaction of intense and ultrafast light fields with solids, electrons may be excited …
interaction of intense and ultrafast light fields with solids, electrons may be excited …
Carrier-envelope phase on-chip scanner and control of laser beams
The carrier-envelope phase (CEP) is an important property of few-cycle laser pulses,
allowing for light field control of electronic processes during laser-matter interactions. Thus …
allowing for light field control of electronic processes during laser-matter interactions. Thus …
Ultra-CEP-stable single-cycle pulses at 2.2 µm
Single-cycle optical pulses with controllable carrier-envelope phase (CEP) form the basis to
manipulate the nonlinear polarization of matter on a sub-femtosecond time scale. Moreover …
manipulate the nonlinear polarization of matter on a sub-femtosecond time scale. Moreover …
[HTML][HTML] Single-cycle all-fiber frequency comb
Single-cycle pulses with a deterministic carrier-envelope phase enable the study and control
of light–matter interactions at the sub-cycle timescale, as well as the efficient generation of …
of light–matter interactions at the sub-cycle timescale, as well as the efficient generation of …
Optical current generation in graphene: CEP control vs. ω + 2ω control
The injection of directional currents in solids with strong optical fields has attracted
tremendous attention as a route to realize ultrafast electronics based on the quantum …
tremendous attention as a route to realize ultrafast electronics based on the quantum …
Light-induced quantum tunnelling current in graphene
M Sennary, J Shah, M Yuan, A Mahjoub… - arxiv preprint arxiv …, 2024 - arxiv.org
In the last decade, advancements in attosecond spectroscopy have allowed us to study
electron motion dynamics in condensed matter. The access to these electron dynamics and …
electron motion dynamics in condensed matter. The access to these electron dynamics and …
Benchmarking of analytical photoionization models for solids using photoionization-induced reflection
First-principle simulations of photoionization processes in solids can quickly become a
numerically very demanding task. In some cases, simple analytical expressions for the …
numerically very demanding task. In some cases, simple analytical expressions for the …
Lightwave-driven electrons in a Floquet topological insulator
T Weitz, D Lesko, S Wittigschlager, W Li… - arxiv preprint arxiv …, 2024 - arxiv.org
Topological insulators offer unique opportunities for novel electronics and quantum
phenomena. However, intrinsic material limitations often restrict their applications and …
phenomena. However, intrinsic material limitations often restrict their applications and …
Attomicroscopy imaging and control of electron motion in graphene
Attosecond science has leveraged the highly nonlinear interactions between intense few-
cycle laser pulses and matter, allowing for unprecedented observation and control of …
cycle laser pulses and matter, allowing for unprecedented observation and control of …