collaborators
Showing quant-phShow all

5 papers · 1 filter

quant-ph2025

High-fidelity, quasi-deterministic entanglement generation using phase-matched spectral islands in a zero-added-loss multiplexing architecture

Jeffrey H. Shapiro, Clark Embleton, Michael G. Raymer +1

Spontaneous parametric down-converters (SPDCs) are the best available entanglement sources for distributing entanglement in a quantum internet. However, their intrinsically probabi…

quant-ph2024

Entanglement source and quantum memory analysis for zero added-loss multiplexing

Jeffrey H. Shapiro, Michael G. Raymer, Clark Embleton +2

High-rate, high-fidelity entanglement distribution is essential to the creation of a quantum internet, but recent achievements in fiber and satellite-based entanglement distributio…

quant-ph2024

The Duan-Kimble cavity-atom quantum memory loading scheme revisited

Michael G. Raymer, Clark Embleton, Jeffrey H. Shapiro

We reexamine the well-known Duan-Kimble entanglement scheme, wherein the state of a single-photon qubit is entangled with a quantum memory consisting of a single-atom qubit in a st…

quant-ph2024

Quantum Network Tomography

Matheus Guedes de Andrade, Jake Navas, Saikat Guha +4

Errors are the fundamental barrier to the development of quantum systems. Quantum networks are complex systems formed by the interconnection of multiple components and suffer from…

quant-ph2024

Limitations in Fluorescence-Detected Entangled Two-Photon-Absorption Experiments: Exploring the Low- to High-Gain Squeezing Regimes

Tiemo Landes, Brian J. Smith, Michael G. Raymer

We closely replicated and extended a recent experiment ("Spatial properties of entangled two-photon absorption," Phys. Rev. Lett. 129, 183601, 2022) that reportedly observed enhanc…