Loss resilience of driven-dissipative remote entanglement in chiral waveguide quantum electrodynamics

Fuente: arXiv
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Hauptverfasser: Irfan, Abdullah, Yao, Mingxing, Lingenfelter, Andrew, Cao, Xi, Clerk, Aashish A., Pfaff, Wolfgang
Format: Preprint
Veröffentlicht: 2024
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author Irfan, Abdullah
Yao, Mingxing
Lingenfelter, Andrew
Cao, Xi
Clerk, Aashish A.
Pfaff, Wolfgang
author_facet Irfan, Abdullah
Yao, Mingxing
Lingenfelter, Andrew
Cao, Xi
Clerk, Aashish A.
Pfaff, Wolfgang
contents Establishing limits of entanglement in open quantum systems is a problem of fundamental interest, with strong implications for applications in quantum information science. Here, we study limits of entanglement stabilization between remote qubits. We theoretically investigate the loss resilience of driven-dissipative entanglement between remote qubits coupled to a chiral waveguide. We find that by coupling a pair of storage qubits to the two driven qubits, the steady state can be tailored such that the storage qubits show a degree of entanglement that is higher than what can be achieved with only two driven qubits coupled to the waveguide. By reducing the degree of entanglement of the driven qubits, we show that the entanglement between the storage qubits becomes more resilient to waveguide loss. Our analytical and numerical results offer insights into how waveguide loss limits the degree of entanglement in this driven-dissipative system, and offers important guidance for remote entanglement stabilization in the laboratory, for example using superconducting circuits.
format Preprint
id arxiv_https___arxiv_org_abs_2404_00142
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Loss resilience of driven-dissipative remote entanglement in chiral waveguide quantum electrodynamics
Irfan, Abdullah
Yao, Mingxing
Lingenfelter, Andrew
Cao, Xi
Clerk, Aashish A.
Pfaff, Wolfgang
Quantum Physics
Establishing limits of entanglement in open quantum systems is a problem of fundamental interest, with strong implications for applications in quantum information science. Here, we study limits of entanglement stabilization between remote qubits. We theoretically investigate the loss resilience of driven-dissipative entanglement between remote qubits coupled to a chiral waveguide. We find that by coupling a pair of storage qubits to the two driven qubits, the steady state can be tailored such that the storage qubits show a degree of entanglement that is higher than what can be achieved with only two driven qubits coupled to the waveguide. By reducing the degree of entanglement of the driven qubits, we show that the entanglement between the storage qubits becomes more resilient to waveguide loss. Our analytical and numerical results offer insights into how waveguide loss limits the degree of entanglement in this driven-dissipative system, and offers important guidance for remote entanglement stabilization in the laboratory, for example using superconducting circuits.
title Loss resilience of driven-dissipative remote entanglement in chiral waveguide quantum electrodynamics
topic Quantum Physics
url https://arxiv.org/abs/2404.00142