Dissipative stabilization of maximal entanglement between non-identical emitters via two-photon excitation

Fuente: arXiv
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Main Authors: Vivas-Viaña, Alejandro, Martín-Cano, Diego, Muñoz, Carlos Sánchez
Format: Preprint
Published: 2023
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author Vivas-Viaña, Alejandro
Martín-Cano, Diego
Muñoz, Carlos Sánchez
author_facet Vivas-Viaña, Alejandro
Martín-Cano, Diego
Muñoz, Carlos Sánchez
contents Two non-identical quantum emitters, when placed within a cavity and coherently excited at the two-photon resonance, can reach stationary states of nearly maximal entanglement. In Vivas-Viaña et al., we introduce a frequency-resolved Purcell effect stabilizing entangled $W$ states among strongly interacting quantum emitters embedded in a cavity. Here, we delve deeper into a specific configuration with a particularly rich phenomenology: two interacting quantum emitters under coherent excitation at the two-photon resonance. This scenario yields two resonant cavity frequencies where the combination of two-photon driving and Purcell-enhanced decay stabilizes the system into the sub- and superradiant states, respectively. By considering the case of non-degenerate emitters and exploring the parameter space of the system, we show that this mechanism is merely one among a complex family of phenomena that can generate both stationary and metastable entanglement when driving the emitters at the two-photon resonance. We provide a global perspective of this landscape of mechanisms and contribute analytical characterizations and insights into these phenomena, establishing connections with previous reports in the literature and discussing how some of these effects can be optically detected.
format Preprint
id arxiv_https___arxiv_org_abs_2306_06028
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Dissipative stabilization of maximal entanglement between non-identical emitters via two-photon excitation
Vivas-Viaña, Alejandro
Martín-Cano, Diego
Muñoz, Carlos Sánchez
Quantum Physics
Atomic Physics
Two non-identical quantum emitters, when placed within a cavity and coherently excited at the two-photon resonance, can reach stationary states of nearly maximal entanglement. In Vivas-Viaña et al., we introduce a frequency-resolved Purcell effect stabilizing entangled $W$ states among strongly interacting quantum emitters embedded in a cavity. Here, we delve deeper into a specific configuration with a particularly rich phenomenology: two interacting quantum emitters under coherent excitation at the two-photon resonance. This scenario yields two resonant cavity frequencies where the combination of two-photon driving and Purcell-enhanced decay stabilizes the system into the sub- and superradiant states, respectively. By considering the case of non-degenerate emitters and exploring the parameter space of the system, we show that this mechanism is merely one among a complex family of phenomena that can generate both stationary and metastable entanglement when driving the emitters at the two-photon resonance. We provide a global perspective of this landscape of mechanisms and contribute analytical characterizations and insights into these phenomena, establishing connections with previous reports in the literature and discussing how some of these effects can be optically detected.
title Dissipative stabilization of maximal entanglement between non-identical emitters via two-photon excitation
topic Quantum Physics
Atomic Physics
url https://arxiv.org/abs/2306.06028