8 papers
Predicting Entanglement Entropy from Particle Tunneling of Interacting Fermions Using Kolmogorov-Arnold Networks
Elvira Bilokon, Valeriia Bilokon, Abhijit Sen +3
Entanglement entropy is a fundamental measure of quantum correlations and a key resource underpinning advances in quantum information and many-body physics. We uncover a universal…
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…
Quantum attomicroscopy: imaging quantum chemistry in action
Nikolay V. Golubev, Mohammed Th. Hassan
How quantum electron and nuclei motions affect biomolecular chemical reactions remains a central challengeable question at the interface of quantum chemistry and biology. Ultrafast…
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.…
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…
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…