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Entanglement of photonic modes from a continuously driven two-level system

Authors :
Yang, Jiaying
Strandberg, Ingrid
Vivas-Viana, Alejandro
Gaikwad, Akshay
Castillo-Moreno, Claudia
Kockum, Anton Frisk
Ullah, Muhammad Asad
Munoz, Carlos Sanchez
Eriksson, Axel Martin
Gasparinetti, Simone
Publication Year :
2024

Abstract

The ability to generate entangled states of light is a key primitive for quantum communication and distributed quantum computation. Continuously driven sources, including those based on spontaneous parametric downconversion, are usually probabilistic, whereas deterministic sources require accurate timing of the control fields. Here, we experimentally generate entangled photonic modes by continuously exciting a quantum emitter, a superconducting qubit, with a coherent drive, taking advantage of mode matching in the time and frequency domain. Using joint quantum state tomography and logarithmic negativity, we show that entanglement is generated between modes extracted from the two sidebands of the resonance fluorescence spectrum. Because the entangled photonic modes are perfectly orthogonal, they can be transferred into distinct quantum memories. Our approach can be utilized to distribute entanglement at a high rate in various physical platforms, with applications in waveguide quantum electrodynamics, distributed quantum computing, and quantum networks.

Subjects

Subjects :
Quantum Physics

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2407.07991
Document Type :
Working Paper