activity
20242026
collaborators

5 papers

physics.optics2026

Nonlocality is the missing design rule for topological photonics

Fatemeh Davoodi

Topological photonics has provided powerful design rules for routing and localizing light through geometry, symmetry and engineered coupling. However, fabricated nanophotonic and p…

physics.optics2026

Geometry-calibrated equilibrium sensing for inverse design of nonlocal topological photonic lattices

Fatemeh Davoodi, Jeffrey McCord

Topological photonic lattices are commonly designed using short-range Hamiltonians, yet realistic nanophotonic structures are governed by geometry- and wavelength-dependent long-ra…

physics.optics2025

From Bound States to Quantum Spin Models: Chiral Coherent Dynamics in Topological Photonic Rings

Fatemeh Davoodi

Topological photonic systems offer a robust platform for guiding light in the presence of disorder, but their interplay with quantum emitters remains a frontier for realizing stron…

physics.optics2025

Beyond Decoherence: Control the Collective Quantum Dynamics of Quasi Particles in Topological Interface

Fatemeh Davoodi

Long lived coherent quasiparticles are a promising foundation for novel quantum technologies, where maintaining quantum coherence is crucial. Decoherence, driven by finite emitter…

physics.optics2024

Active Physics Informed Deep Learning: Surrogate Modeling for Non Planar Wavefront Excitation of Topological Nanophotonic Devices

Fatemeh Davoodi

Topological plasmonics offers new ways to manipulate light by combining concepts from topology and plasmonics, similar to topological edge states in photonics. However, designing s…