November 2023

Conference Paper

Modelling integrated quantum frequency processors towards robust quantum networks

By:
Nussbaum, Benjamin; Pizzimenti, Andrew; Lingaraju, Navin; Lu, Hsuan-Hao ; Lukens, Joseph M
Page Number:
124460
Volume:
12446
Issue Number:
N/A
Book Title:
Quantum Computing, Communication, and Simulation III
Publication Date:
November 9, 2023
Publisher Location:
SPIE, Bellingham, Washington, United States of America
Conference Name:
SPIE Photonics West: Quantum West
Conference Location:
San Francisco, California, United States of America
Conference Sponsor:
SPIE, the international society for optics and photonics
View DOI Listing:
https://doi.org/10.1117/12.2649212

Abstract

Frequency-encoded quantum information offers intriguing opportunities for quantum communications networks, with the quantum frequency processor (QFP) paradigm promising scalable construction of quantum gates. Yet all experimental demonstrations to date have relied on discrete fiber-optic components that occupy significant physical space and impart appreciable loss. We introduce a model for designing QFPs comprising microring resonator-based pulse shapers and integrated phase modulators. We estimate the performance of frequency-bin Hadamard gates, finding high fidelity values sustained for relatively wide-bandwidth frequency bins. Our simple model and can be extended to other material platforms, providing a design tool for future frequency processors in integrated photonics.