activity
20182025
most citedOptical coherence properties of Kramers' rare-earth ions at the nanoscale for quantum applications

19 citations · 19 across the 5 of their papers we have counts for

collaborators

6 papers

physics.optics2025

Dichography: Two-frame Ultrafast Imaging from a Single Diffraction Pattern

Linos Hecht, Andre Al Haddad, Björn Bastian +47

We experimentally demonstrate that pairs of time-delayed ultrabright and ultrashort X-ray pulses of two different colors, delivered by modern X-ray Free Electron Lasers, can provid…

cond-mat.mtrl-sci2025

Direct observation of the exciton polaron by serial femtosecond crystallography on single CsPbBr quantum dots

Zhou Shen, Margarita Samoli, Onur Erdem +28

The outstanding opto-electronic properties of lead halide perovskites have been related to the formation of polarons. Nevertheless, the observation of the atomistic deformation bro…

q-bio.BM2024

Observation of Aerosolization-induced Morphological Changes in Viral Capsids

Abhishek Mall, Anna Munke, Zhou Shen +27

Single-stranded RNA viruses co-assemble their capsid with the genome and variations in capsid structures can have significant functional relevance. In particular, viruses need to r…

physics.ins-det2023

Helium-Electrospray: an improved sample delivery system for single-particle imaging with X-ray lasers

Tej Varma Yenupuri, Safi Rafie-Zinedine, Lena Worbs +4

Imaging the structure and observing the dynamics of isolated proteins using single-particle X-ray diffractive imaging (SPI) is one of the potential applications of X-ray free-elect…

quant-ph2023★ 19 cited

Optical coherence properties of Kramers' rare-earth ions at the nanoscale for quantum applications

Mohammed K. Alqedra, Chetan Deshmukh, Shuping Liu +12

Rare-earth (RE) ion doped nano-materials are promising candidates for a range of quantum technology applications. Among RE ions, the so-called Kramers' ions possess spin transition…

hep-th2018

Simplifying Quantum Gravity Calculations

Safi Rafie-Zinedine

The Einstein-Hilbert Lagrangian for gravity is non-renormalizable at loop level. However, it can be treated in the effective field theory framework which means that gravity as an e…