activity
20122020
most citedMulti-photon quantum interference in a multi-port integrated photonic device

169 citations · 191 across the 2 of their papers we have counts for

collaborators

6 papers

physics.optics2020

Highly-Chirped Bragg Gratings for Integrated Silica Spectrometers

James W. Field, Sam A. Berry, Rex H. S. Bannerman +4

A blazed chirped Bragg grating in a planar silica waveguide device was used to create an integrated diffractive element for a spectrometer. The grating diffracts light from a waveg…

physics.optics201922 cited

Zn-indiffused diced ridge waveguides in MgO:PPLN generating 1 watt 780 nm SHG at 70% efficiency

Sam A. Berry, Lewis G. Carpenter, Alan C. Gray +2

We present a metallic zinc indiffused diced ridge waveguide in magnesium doped periodically poled lithium niobate (MgO:PPLN) capable of generating over 1 W of 780 nm with 70% effic…

physics.app-ph2018

High-birefringence direct UV-written waveguides for heralded single-photon sources at telecommunication wavelengths

Matthew T. Posner, T. Hiemstra, Paolo L. Mennea +8

Direct UV-written waveguides are fabricated in silica-on-silicon with birefringence of , much greater than previously reported in this platform. We sh…

quant-ph2018

Modular Linear Optical Circuits

Paolo L. Mennea, William R. Clements, Devin H. Smith +8

We propose and demonstrate a modular architecture for reconfigurable on-chip linear-optical circuits. Each module contains 10 independent phase-controlled Mach-Zehnder interferomet…

quant-ph2018

A two-way photonic interface for linking Sr+ transition at 422 nm to the telecommunications C-band

Thomas A. Wright, Robert J. A. Francis-Jones, Corin B. E. Gawith +7

We report a single-stage bi-directional interface capable of linking Sr+ trapped ion qubits in a long-distance quantum network. Our interface converts photons between the Sr+ emiss…

quant-ph2012169 cited

Multi-photon quantum interference in a multi-port integrated photonic device

Benjamin J. Metcalf, Nicholas Thomas-Peter, Justin B. Spring +11

Increasing the complexity of quantum photonic devices is essential for many optical information processing applications to reach a regime beyond what can be classically simulated,…