activity
20242026
collaborators

6 papers

physics.optics2026

Attosecond quantum optics

Mohamed Sennary, Javier Rivera-Dean, Yihe Wange +2

Modern quantum optics primarily operates in the quasistationary regime, isolated from the intrinsic timescales of ultrafast optical fields. Pushing these boundaries into the femtos…

physics.chem-ph2025

Imaging and controlling electron motion and chemical structural dynamics of biological system in real time and space

Ligong Zhao, Mohamed Sennary, Dina Hussein +4

Ultrafast electron microscopy (UEM) has found widespread applications in physics, chemistry, and materials science, enabling real-space imaging of dynamics on ultrafast timescales.…

physics.optics2025

Ultrafast quantum light uncertainty dynamics in real time

Mohamed Sennary, Javier Rivera-Dean, Mohamed ElKabbash +3

Advancements in quantum optics and squeezed light generation have transformed various domains of quantum science and technology. However, real-time quantum dynamics remain an under…

physics.optics2025

Comment on "Comment on Attosecond electron microscopy and diffraction"

Dandan Hui, Husain Alqattan, Mohamed Sennary +2

Over the past few decades, following the first demonstration of ultrafast electron microscopy, numerous research groups have focused on achieving attosecond temporal resolution in…

cond-mat.mes-hall2024

Attomicroscopy imaging and control of electron motion in graphene

Mingrui Yuan, Husain Alqattan, Dandan Hui +4

Attosecond science has leveraged the highly nonlinear interactions between intense few-cycle laser pulses and matter, allowing for unprecedented observation and control of electron…

cond-mat.mes-hall2024

Light-induced quantum tunnelling current in graphene

Mohamed Sennary, Jalil Shah, Mingrui Yuan +4

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, conseq…