activity
20242026
collaborators

5 papers

quant-ph2026

High-resolution tunable frequency beamsplitter enabled by an integrated silicon pulse shaper

Chen-You Su, Kaiyi Wu, Lucas M. Cohen +6

We demonstrate high-fidelity, tunable, and ultrafine-resolution on-chip frequency beamsplitters using a quantum frequency processor based on an integrated pulse shaper with six spe…

quant-ph2026

A paradigm for universal quantum information processing with integrated acousto-optic frequency beamsplitters

Joseph M. Lukens, John H. Dallyn, Hsuan-Hao Lu +5

Frequency-bin encoding offers tremendous potential in quantum photonic information processing, in which a single waveguide can support hundreds of lightpaths in a naturally phase-s…

quant-ph2025

Beyond critical coupling: optimal design considerations for spontaneous four-wave mixing in microring resonators

Joseph M. Lukens, Karthik V. Myilswamy, Alexander Miloshevsky +1

We present a self-contained analytical model for biphoton generation in microring resonators. Encompassing both all-pass and add-drop geometries, identical and distinct pump and bi…

physics.app-ph2025

Injection locking of GHz-frequency surface acoustic wave phononic crystal oscillator

Zichen Xi, Hsuan-Hao Lu, Jun Ji +4

Low-noise gigahertz (GHz) frequencies sources are essential for applications in signal processing, sensing, and telecommunications. Surface acoustic wave (SAW) resonator-based osci…

quant-ph2024

On-chip frequency-bin quantum photonics

Karthik V. Myilswamy, Lucas M. Cohen, Suparna Seshadri +2

Frequency-bin encoding furnishes a compelling pathway for quantum information processing systems compatible with established lightwave infrastructures based on fiber-optic transmis…