Zur Hauptnavigation wechseln Zur Suche wechseln Zum Hauptinhalt wechseln

Sonderforschungsbereich 1464, Teilprojekt A02: Gravitationsmessung mit Atominterferometrie über lange Basislinien

  • Rasel, Ernst Maria (Projektleiter*in (Principal Investigator))
  • Schlippert, Dennis (Projektleiter*in (Principal Investigator))

Projekt: Forschung

Projektdetails

Beschreibung

The research project A02 is focusing on two key aspects:

- The correlation of the very long baseline atom interferometer (VLBAI) with motion sensors on the Seismic Attenuation System (SAS) making it possible to utilise the large scale factors achievable on such distances.
- Detailed investigation of systematic effects at an uncertainty level ≤ 10nm/ s2 leading towards the operation of the VLBAI facility as a higher-order reference gravimeter.

With the vibration isolation in work, the instability of our VLBAI could reach ≤ 5nm/ s2 at 1 s, equivalent to an order of magnitude improvement over the state of the art and competitive with superconducting gravimeters and will in the long run provide the data for more precise mass transport models. Similarly, this unprecedented sensitivity is key to characterising systematic effects at the targeted level. With the SAS in the work, the VLBAI facility will commence operation as a gravimeter and register gravity time series. This project will allow us to operate the first gravity reference station based on VLBAI and prove its benefits in the first comparison campaign of such a device with transportable secondary gravimeters such as the FG5X-220 and the gravimeter QG-1 in project A01.
AkronymTerraQ
StatusAbgeschlossen
Tatsächlicher Beginn/ -es Ende1 Jan. 202131 Dez. 2024

Mittelherkunft

  • Deutsche Forschungsgemeinschaft (DFG)

Förderprogramme und -linien

  • Sonderforschungsbereiche/Transregios

Etablierte Forschungsschwerpunkte der LUH

  • Quantenoptik und Gravitationsphysik
  • Multi-Axis Inertial Sensing with 2D Matter-Wave Arrays

    Stolzenberg, K., Struckmann, C., Bode, S., Li, R., Herbst, A., Vollenkemper, V., Thomas, D., Rajagopalan, A., Rasel, E. M., Gaaloul, N. & Schlippert, D., 9 Apr. 2025, in: Physical Review Letters. 134, 14, 143601.

    Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

    Open Access
  • Technology roadmap for cold-atoms based quantum inertial sensor in space

    Abend, S., Allard, B., Arnold, A. S., Ban, T., Barry, L., Battelier, B., Bawamia, A., Beaufils, Q., Bernon, S., Bertoldi, A., Bonnin, A., Bouyer, P., Bresson, A., Burrow, O. S., Canuel, B., Desruelle, B., Drougakis, G., Forsberg, R., Gaaloul, N. & Gauguet, A. &27 mehr, Gersemann, M., Griffin, P. F., Heine, H., Henderson, V. A., Herr, W., Kanthak, S., Krutzik, M., Lachmann, M. D., Lammegger, R., Magnes, W., Mileti, G., Mitchell, M. W., Mottini, S., Papazoglou, D., Pereira Dos Santos, F., Peters, A., Rasel, E., Riis, E., Schubert, C., Seidel, S. T., Tino, G. M., Van Den Bossche, M., Von Klitzing, W., Wicht, A., Witkowski, M., Zahzam, N. & Zawada, M., März 2023, in: AVS Quantum Science. 5, 1, 31 S., 019201.

    Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

    Open Access
  • Understanding the gravitational and magnetic environment of a very long baseline atom interferometer

    Lezeik, A., Tell, D., Zipfel, K., Gupta, V., Wodey, É., Rasel, E., Schubert, C. & Schlippert, D., Juni 2023, Proceedings of the 9th Meeting on CPT and Lorentz Symmetry, CPT 2022: Proceedings of the Ninth Meeting on CPT and Lorentz Symmetry. Lehnert, R. (Hrsg.). World Scientific, S. 64-68 5 S. (Proceedings of the 9th Meeting on CPT and Lorentz Symmetry, CPT 2022).

    Publikation: Beitrag in Buch/Bericht/Sammelwerk/KonferenzbandAufsatz in KonferenzbandForschungPeer-Review