Projekte pro Jahr
Abstract
In the context of simulating precision laser interferometers, we use several examples to compare two wavefront decomposition methods-the Mode Expansion Method (MEM) and the Gaussian Beam Decomposition (GBD) method-for their precision and applicability. To assess the performance of these methods, we define different types of errors and study their properties. We specify how the two methods can be fairly compared and based on that, compare the quality of the MEM and GBD through several examples. Here, we test cases for which analytic results are available, i.e., non-clipped circular and general astigmatic Gaussian beams, as well as clipped circular Gaussian beams, in the near, far, and extremely far fields of millions of kilometers occurring in space-gravitational wave detectors. Additionally, we compare the methods for aberrated wavefronts and their interaction with optical components by testing reflections from differently curved mirrors. We find that both methods can generally be used for decomposing non-Gaussian beams. However, which method is more accurate depends on the optical system and simulation settings. In the given examples, the MEM more accurately describes non-clipped Gaussian beams, whereas for clipped Gaussian beams and the interaction with surfaces, the GBD is more precise.
| Originalsprache | Englisch |
|---|---|
| Aufsatznummer | 9024 |
| Seitenumfang | 1 |
| Fachzeitschrift | Sensors |
| Jahrgang | 23 |
| Ausgabenummer | 22 |
| DOIs | |
| Publikationsstatus | Veröffentlicht - 7 Nov. 2023 |
ASJC Scopus Sachgebiete
- Analytische Chemie
- Information systems
- Instrumentierung
- Atom- und Molekularphysik sowie Optik
- Elektrotechnik und Elektronik
- Biochemie
Projekte
- 4 Abgeschlossen
-
TerraQ: Sonderforschungsbereich 1464, Teilprojekt B03: Optische Design-Methoden für rauscharme Interferometrie
Wanner, G. (Projektleiter*in (Principal Investigator)) & Heinzel, G. (Projektleiter*in (Principal Investigator))
1 Jan. 2021 → 31 Dez. 2024
Projekt: Forschung
-
TerraQ: Sonderforschungsbereich 1464: Relativistische und quanten-basierte Geodäsie
Müller, J. (Projektleiter*in (Principal Investigator))
1 Jan. 2021 → 31 Dez. 2024
Projekt: Forschung
-
QuantumFrontiers: Exzellenzcluster 2123/1: Licht und Materie an der Quantengrenze
Schmidt, P. O. (Projektleiter*in (Principal Investigator)), Ospelkaus-Schwarzer, S. (Projektleiter*in (Principal Investigator)), Chichkov, B. (Projektleiter*in (Principal Investigator)), Danzmann, K. (Projektleiter*in (Principal Investigator)), Ertmer, W. (Projektleiter*in (Principal Investigator)), Hammerer, K. J. (Projektleiter*in (Principal Investigator)), Haug, R. (Projektleiter*in (Principal Investigator)), Heinzel, G. (Projektleiter*in (Principal Investigator)), Heurs, M. (Projektleiter*in (Principal Investigator)), Klempt, C. (Projektleiter*in (Principal Investigator)), Kroker, S. (Projektleiter*in (Principal Investigator)), Lisdat, C. (Projektleiter*in (Principal Investigator)), Mehlstäubler, T. (Projektleiter*in (Principal Investigator)), Müller, J. (Projektleiter*in (Principal Investigator)), Ospelkaus, C. (Projektleiter*in (Principal Investigator)), Rasel, E. M. (Projektleiter*in (Principal Investigator)), Recher, P. (Projektleiter*in (Principal Investigator)), Santos, L. S. (Projektleiter*in (Principal Investigator)), Schilling, M. (Projektleiter*in (Principal Investigator)), Schlickum, U. (Projektleiter*in (Principal Investigator)), Schumacher, H. W. (Projektleiter*in (Principal Investigator)), Surzhykov, A. (Projektleiter*in (Principal Investigator)), Waag, A. (Projektleiter*in (Principal Investigator)), Werner, R. (Projektleiter*in (Principal Investigator)) & Willke, B. (Projektleiter*in (Principal Investigator))
1 Jan. 2019 → 31 Dez. 2025
Projekt: Forschung
Datasets
-
Data for paper: "Method Comparison for Simulating Non-Gaussian Beams and Diffraction for Precision Interferometry"
Zhao, M. (Urheber*in), Wanner, G. (Datenmanager*in) & Kaune, T. (Urheber*in), Forschungsdaten-Repositorium der LUH, 16 Nov. 2023
DOI: 10.25835/lm02jmx0, https://data.uni-hannover.de/dataset/data-for-paper-zhao2023-method-comparison
Datensatz: Dataset
Dieses zitieren
- APA
- Author
- BIBTEX
- Harvard
- Standard
- RIS
- Vancouver