Creation of nonclassical states of light in a chiral waveguide

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Standard

Creation of nonclassical states of light in a chiral waveguide. / Kleinbeck, Kevin; Busche, Hannes; Stiesdal, Nina; Hofferberth, Sebastian; Molmer, Klaus; Buechler, Hans Peter.

I: Physical Review A, Bind 107, Nr. 1, 013717, 23.01.2023.

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningfagfællebedømt

Harvard

Kleinbeck, K, Busche, H, Stiesdal, N, Hofferberth, S, Molmer, K & Buechler, HP 2023, 'Creation of nonclassical states of light in a chiral waveguide', Physical Review A, bind 107, nr. 1, 013717. https://doi.org/10.1103/PhysRevA.107.013717

APA

Kleinbeck, K., Busche, H., Stiesdal, N., Hofferberth, S., Molmer, K., & Buechler, H. P. (2023). Creation of nonclassical states of light in a chiral waveguide. Physical Review A, 107(1), [013717]. https://doi.org/10.1103/PhysRevA.107.013717

Vancouver

Kleinbeck K, Busche H, Stiesdal N, Hofferberth S, Molmer K, Buechler HP. Creation of nonclassical states of light in a chiral waveguide. Physical Review A. 2023 jan. 23;107(1). 013717. https://doi.org/10.1103/PhysRevA.107.013717

Author

Kleinbeck, Kevin ; Busche, Hannes ; Stiesdal, Nina ; Hofferberth, Sebastian ; Molmer, Klaus ; Buechler, Hans Peter. / Creation of nonclassical states of light in a chiral waveguide. I: Physical Review A. 2023 ; Bind 107, Nr. 1.

Bibtex

@article{eb901020016d478095a9f83018ba4c19,
title = "Creation of nonclassical states of light in a chiral waveguide",
abstract = "Creating nonclassical states of light from simple quantum systems together with classical resources is a challenging problem. We show how chiral emitters under a coherent drive can generate nonclassical photon states. For our analysis, we select a specific temporal mode in the transmitted light field, resulting in a coupled master equation for the relevant mode and the chiral emitters. We characterize the mode's state by its Wigner function and show that the emission from the system predominantly produces mixtures of few-photon-added coherent states. We argue that these nonclassical states are experimentally accessible and show their application for quantum metrology.",
keywords = "QUANTUM KEY DISTRIBUTION, ENHANCED SENSITIVITY, SQUEEZED STATES, NOON STATES, PHOTON, GENERATION",
author = "Kevin Kleinbeck and Hannes Busche and Nina Stiesdal and Sebastian Hofferberth and Klaus Molmer and Buechler, {Hans Peter}",
year = "2023",
month = jan,
day = "23",
doi = "10.1103/PhysRevA.107.013717",
language = "English",
volume = "107",
journal = "Physical Review A - Atomic, Molecular, and Optical Physics",
issn = "1050-2947",
publisher = "American Physical Society",
number = "1",

}

RIS

TY - JOUR

T1 - Creation of nonclassical states of light in a chiral waveguide

AU - Kleinbeck, Kevin

AU - Busche, Hannes

AU - Stiesdal, Nina

AU - Hofferberth, Sebastian

AU - Molmer, Klaus

AU - Buechler, Hans Peter

PY - 2023/1/23

Y1 - 2023/1/23

N2 - Creating nonclassical states of light from simple quantum systems together with classical resources is a challenging problem. We show how chiral emitters under a coherent drive can generate nonclassical photon states. For our analysis, we select a specific temporal mode in the transmitted light field, resulting in a coupled master equation for the relevant mode and the chiral emitters. We characterize the mode's state by its Wigner function and show that the emission from the system predominantly produces mixtures of few-photon-added coherent states. We argue that these nonclassical states are experimentally accessible and show their application for quantum metrology.

AB - Creating nonclassical states of light from simple quantum systems together with classical resources is a challenging problem. We show how chiral emitters under a coherent drive can generate nonclassical photon states. For our analysis, we select a specific temporal mode in the transmitted light field, resulting in a coupled master equation for the relevant mode and the chiral emitters. We characterize the mode's state by its Wigner function and show that the emission from the system predominantly produces mixtures of few-photon-added coherent states. We argue that these nonclassical states are experimentally accessible and show their application for quantum metrology.

KW - QUANTUM KEY DISTRIBUTION

KW - ENHANCED SENSITIVITY

KW - SQUEEZED STATES

KW - NOON STATES

KW - PHOTON

KW - GENERATION

U2 - 10.1103/PhysRevA.107.013717

DO - 10.1103/PhysRevA.107.013717

M3 - Journal article

VL - 107

JO - Physical Review A - Atomic, Molecular, and Optical Physics

JF - Physical Review A - Atomic, Molecular, and Optical Physics

SN - 1050-2947

IS - 1

M1 - 013717

ER -

ID: 347972360