collaborators
Showing physics.opticsShow all

5 papers · 1 filter

physics.optics2026

Ultra-wideband electrically-tuned mid-infrared on-chip parametric oscillator

Alexander Y. Hwang, Hubert S. Stokowski, Luke Qi +7

Developing compact, broadband mid-infrared coherent sources for applications in spectroscopy and sensing remains a pressing challenge in photonics. However, material limitations an…

physics.optics2026

Ultrabroadband Passive Laser Noise Suppression to Quantum Noise Limit through on-chip Second Harmonic Generation

Geun Ho Ahn, Ziyu Wang, Devin J. Dean +5

Laser intensity noise limits performance in quantum sensing, metrology, and computing. Existing stabilization methods face a trade-off between bandwidth and complexity: electronic…

physics.optics2025

Low-power integrated optical parametric amplification via second-harmonic resonance

Devin J. Dean, Taewon Park, Hubert S. Stokowski +6

Optical amplifiers are fundamental to modern photonics, enabling long-distance communications, precision sensing, and quantum information processing. Erbium-doped amplifiers domina…

physics.optics2025

Low-loss, fabrication-tolerant, and highly-tunable Sagnac loop reflectors and Fabry-Pérot cavities on thin-film lithium niobate

Luke Qi, Ali Khalatpour, Jason Herrmann +8

We present low-loss () and power-efficient Mach-Zehnder interferometers (MZIs) on thin-film lithium niobate. To accurately measure low MZI losses, we develop a self-calibra…

physics.optics2025

Roughness-Limited Performance in Ultra-Low-Loss Lithium Niobate Cavities

Ali Khalatpour, Luke Qi, Martin M. Fejer +1

Achieving low optical loss is critical for scaling complex photonic systems. Thin-film lithium niobate (TFLN) offers strong electro-optic and nonlinear properties in a compact plat…