collaborators

5 papers

quant-ph2025

Noise-Aware Entanglement Generation Protocols for Superconducting Qubits with Impedance-Matched FBAR Transducers

Erin Sheridan, Michael Senatore, Samuel Schwab +8

Connecting superconducting quantum processors to telecommunications-wavelength quantum networks is critically necessary to enable distributed quantum computing, secure communicatio…

quant-ph2025

Telecommunications fiber-optic and free-space quantum local area networks at the Air Force Research Laboratory

Erin Sheridan, Nicholas J. Barton, Richard Birrittella +29

As quantum computing, sensing, timing, and networking technologies mature, quantum network testbeds are being deployed across the United States and around the world. To support the…

physics.optics2025

Hong-Ou-Mandel Comb and Switch using parallel chains of non-identical Micro-Ring Resonators

Peter L. Kaulfuss, Paul M. Alsing, Richard J. Birrittella +3

Micro-Ring Resonators (MRRs) allow us to access the Hong-Ou-Mandel (HOM) effect at a variety of tunable parameter combinations along exact analytic solutions. This higher-dimension…

quant-ph2025

Frequency auto-homogenization using group-velocity-matched downconversion

Dylan Heberle, Christopher C. Tison, James Schneeloch +4

With the stability of integrated photonics at network nodes and the advantages of photons as flying qubits, photonic quantum information processing (PQIP) makes quantum networks in…

quant-ph2025

Principles for Optimizing Quantum Transduction in Piezo-Optomechanical Systems

James Schneeloch, Erin Sheridan, A. Matthew Smith +5

Two-way microwave-optical quantum transduction is essential to connecting distant superconducting qubits via optical fiber, and to enable quantum networking at a large scale. In Bl…