Implementation of the toroidal absorption ...
Type de document :
Article dans une revue scientifique: Article original
DOI :
URL permanente :
Titre :
Implementation of the toroidal absorption cell with multi-layer patterns by a single ring surface
Auteur(s) :
Chang, Hong [Auteur]
Taiyuan University of Technology
Feng, Shiling [Auteur]
Taiyuan University of Technology
Qiu, Xuanbing [Auteur]
Taiyuan University of Technology
Meng, Huiyan [Auteur]
463444|||Taiyuan University of Technology
Guo, Guqing [Auteur]
463444|||Taiyuan University of Technology
He, Xiaohu [Auteur]
Taiyuan University of Technology
He, Qiusheng [Auteur]
Taiyuan University of Technology
Yang, Xiaohua [Auteur]
Ma, Weiguang [Auteur]
State Key Laboratory of Quantum Optics and Quantum Optics devices
Kan, Ruifeng [Auteur]
State Key Laboratory of Quantum Optics and Quantum Optics devices
Fittschen, Christa [Auteur]
Physicochimie des Processus de Combustion et de l’Atmosphère - UMR 8522 [PC2A]
Li, Chuanliang [Auteur]
Taiyuan University of Technology
Taiyuan University of Technology
Feng, Shiling [Auteur]
Taiyuan University of Technology
Qiu, Xuanbing [Auteur]
Taiyuan University of Technology
Meng, Huiyan [Auteur]
463444|||Taiyuan University of Technology
Guo, Guqing [Auteur]
463444|||Taiyuan University of Technology
He, Xiaohu [Auteur]
Taiyuan University of Technology
He, Qiusheng [Auteur]
Taiyuan University of Technology
Yang, Xiaohua [Auteur]
Ma, Weiguang [Auteur]
State Key Laboratory of Quantum Optics and Quantum Optics devices
Kan, Ruifeng [Auteur]
State Key Laboratory of Quantum Optics and Quantum Optics devices
Fittschen, Christa [Auteur]

Physicochimie des Processus de Combustion et de l’Atmosphère - UMR 8522 [PC2A]
Li, Chuanliang [Auteur]
Taiyuan University of Technology
Titre de la revue :
Optics Letters
Nom court de la revue :
Opt. Lett.
Numéro :
45
Éditeur :
The Optical Society
Date de publication :
2020-09-17
Discipline(s) HAL :
Physique [physics]/Physique [physics]
Physique [physics]/Physique [physics]/Chimie-Physique [physics.chem-ph]
Chimie/Chimie théorique et/ou physique
Physique [physics]/Physique [physics]/Chimie-Physique [physics.chem-ph]
Chimie/Chimie théorique et/ou physique
Résumé en anglais : [en]
We developed a type of toroidal multi-pass cell with multi-layer patterns based on the off-axis model. The effective path length of the original toroidal multi-pass cell is extended several roundtrips in comparison with ...
Lire la suite >We developed a type of toroidal multi-pass cell with multi-layer patterns based on the off-axis model. The effective path length of the original toroidal multi-pass cell is extended several roundtrips in comparison with the single-layer pattern, since the inner surface of the toroidal multi-pass cell is more efficiently utilized. The light pattern has been achieved by using the simple ring surface, which is easy to fabricate. The exact analytical equations for the design of the toroidal multi-pass cell were derived based on analytical vector calculations. A series of numerical ray tracing simulations is presented, and the maximum theoretical optical path length that can be reached is 30 m with a setup of 5 cm column radius. Furthermore, two practical spot patterns are demonstrated with a path length of 8.3 m for a two-layer pattern and 10 m for a three-layer pattern, with respective effective volumes of 63 mL and 94 mL. Furthermore, the fringe effect is substantially reduced to less than 0.5% by the usage of our designed mask.Lire moins >
Lire la suite >We developed a type of toroidal multi-pass cell with multi-layer patterns based on the off-axis model. The effective path length of the original toroidal multi-pass cell is extended several roundtrips in comparison with the single-layer pattern, since the inner surface of the toroidal multi-pass cell is more efficiently utilized. The light pattern has been achieved by using the simple ring surface, which is easy to fabricate. The exact analytical equations for the design of the toroidal multi-pass cell were derived based on analytical vector calculations. A series of numerical ray tracing simulations is presented, and the maximum theoretical optical path length that can be reached is 30 m with a setup of 5 cm column radius. Furthermore, two practical spot patterns are demonstrated with a path length of 8.3 m for a two-layer pattern and 10 m for a three-layer pattern, with respective effective volumes of 63 mL and 94 mL. Furthermore, the fringe effect is substantially reduced to less than 0.5% by the usage of our designed mask.Lire moins >
Langue :
Anglais
Comité de lecture :
Oui
Audience :
Internationale
Vulgarisation :
Non
Établissement(s) :
Université de Lille
CNRS
CNRS
Équipe(s) de recherche :
PhysicoChimie de l'Atmosphère (PCA)
Date de dépôt :
2020-10-07T14:22:35Z
2020-11-23T10:44:03Z
2020-11-23T10:51:59Z
2021-08-24T14:59:32Z
2021-09-17T12:30:29Z
2020-11-23T10:44:03Z
2020-11-23T10:51:59Z
2021-08-24T14:59:32Z
2021-09-17T12:30:29Z
Fichiers
- Implementation of toirodiol cell_accepted.pdf
- Version finale acceptée pour publication (postprint)
- Accès libre
- Accéder au document