Non-Markovian dynamics of generation of bound states in the continuum via single-photon scattering

Fuente: arXiv
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Main Authors: Magnifico, Giuseppe, Maffei, Maria, Pomarico, Domenico, Das, Debmalya, Facchi, Paolo, Pascazio, Saverio, Pepe, Francesco V.
Format: Preprint
Published: 2025
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author Magnifico, Giuseppe
Maffei, Maria
Pomarico, Domenico
Das, Debmalya
Facchi, Paolo
Pascazio, Saverio
Pepe, Francesco V.
author_facet Magnifico, Giuseppe
Maffei, Maria
Pomarico, Domenico
Das, Debmalya
Facchi, Paolo
Pascazio, Saverio
Pepe, Francesco V.
contents The excitation of bound states in the continuum (BICs) in two- or multi-qubit systems lies at the heart of entanglement generation and harnessing in Waveguide Quantum Electrodynamics platforms. However, the generation of qubit pair BICs through single-photon scattering is hindered by the fact that these states are effectively decoupled from propagating photons. We prove that scattering of a parity-invariant single photon on a qubit pair, combined with a properly engineered time variation of the qubit detuning, is not only feasible, but also more effective than strategies based on the relaxation of the excited states of the qubits when the distance between the qubits gives rise to non-negligible photon delays (non-Markovian regime). The use of tensor network methods to simulate the proposed scheme enables to include such photon delays in collision models, thus opening the possibility to follow the time evolution of the full quantum system, including qubits and field, and to efficiently implement and characterize the dynamics hence identifying optimal working points for the BIC generation.
format Preprint
id arxiv_https___arxiv_org_abs_2501_04691
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Non-Markovian dynamics of generation of bound states in the continuum via single-photon scattering
Magnifico, Giuseppe
Maffei, Maria
Pomarico, Domenico
Das, Debmalya
Facchi, Paolo
Pascazio, Saverio
Pepe, Francesco V.
Quantum Physics
Mesoscale and Nanoscale Physics
Atomic Physics
Computational Physics
The excitation of bound states in the continuum (BICs) in two- or multi-qubit systems lies at the heart of entanglement generation and harnessing in Waveguide Quantum Electrodynamics platforms. However, the generation of qubit pair BICs through single-photon scattering is hindered by the fact that these states are effectively decoupled from propagating photons. We prove that scattering of a parity-invariant single photon on a qubit pair, combined with a properly engineered time variation of the qubit detuning, is not only feasible, but also more effective than strategies based on the relaxation of the excited states of the qubits when the distance between the qubits gives rise to non-negligible photon delays (non-Markovian regime). The use of tensor network methods to simulate the proposed scheme enables to include such photon delays in collision models, thus opening the possibility to follow the time evolution of the full quantum system, including qubits and field, and to efficiently implement and characterize the dynamics hence identifying optimal working points for the BIC generation.
title Non-Markovian dynamics of generation of bound states in the continuum via single-photon scattering
topic Quantum Physics
Mesoscale and Nanoscale Physics
Atomic Physics
Computational Physics
url https://arxiv.org/abs/2501.04691