activity
20242026
collaborators
Showing physics.opticsShow all

6 papers · 1 filter

physics.optics2026

Diffractive cascades for polychromatic hard X-ray focusing

William Michaels, Simo Pajovic, Joshua Chen +2

Diffractive focusing of hard X-rays has traditionally required structures with large aspect ratios due to the limited interaction of most materials with X-rays. This has increased…

physics.optics2026

Supercollimating photonic crystal scintillators

Seou Choi, Sachin Vaidya, Charles Roques-Carmes +1

Scintillators convert X-ray energy into visible or near-visible photons, enabling applications in high-energy particle detection and X-ray imaging. Increasing scintillator thicknes…

physics.optics2026

Structures resistant to Manipulation by all Wavefronts in two dimensions

Asher Sabbagh, Michael Horodynski, Rida Khan +2

Using light to manipulate small particles is a powerful tool with numerous practical applications across biophysics and nanotechnology. This experimental technique has achieved sig…

physics.optics2025

Programmable control of the spatiotemporal quantum noise of light

Jamison Sloan, Michael Horodynski, Shiekh Zia Uddin +6

Optoelectronic systems based on multiple modes of light can often exceed the performance of their single-mode counterparts. However, multimode nonlinear interactions often introduc…

physics.optics2025

Controlling X-ray emission with optical nanostructures

Elina Sendonaris, Jamison Sloan, Nicholas Rivera +2

Nonlinear processes lie at the heart of many technologies such as frequency converters and entangled photon sources. Historically, observation and manipulation of these processes,…

physics.optics2024

Topological quantum walk in synthetic non-Abelian gauge fields

Zehai Pang, Omar Abdelghani, Marin Soljačić +1

We theoretically introduce synthetic non-Abelian gauge fields for topological quantum walks. The photonic mesh lattice configuration is generalized with polarization multiplexing t…