INTENTAS -- An entanglement-enhanced atomic sensor for microgravity

Fuente: arXiv
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Main Authors: Anton, O., Bröckel, I., Derr, D., Fieguth, A., Franzke, M., Gärtner, M., Giese, E., Haase, J. S., Hamann, J., Heidt, A., Kanthak, S., Klempt, C., Kruse, J., Krutzik, M., Kubitza, S., Lotz, C., Müller, K., Pahl, J., Rasel, E. M., Schiemangk, M., Schleich, W. P., Schwertfeger, S., Wicht, A., Wörner, L.
Format: Preprint
Published: 2024
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author Anton, O.
Bröckel, I.
Derr, D.
Fieguth, A.
Franzke, M.
Gärtner, M.
Giese, E.
Haase, J. S.
Hamann, J.
Heidt, A.
Kanthak, S.
Klempt, C.
Kruse, J.
Krutzik, M.
Kubitza, S.
Lotz, C.
Müller, K.
Pahl, J.
Rasel, E. M.
Schiemangk, M.
Schleich, W. P.
Schwertfeger, S.
Wicht, A.
Wörner, L.
author_facet Anton, O.
Bröckel, I.
Derr, D.
Fieguth, A.
Franzke, M.
Gärtner, M.
Giese, E.
Haase, J. S.
Hamann, J.
Heidt, A.
Kanthak, S.
Klempt, C.
Kruse, J.
Krutzik, M.
Kubitza, S.
Lotz, C.
Müller, K.
Pahl, J.
Rasel, E. M.
Schiemangk, M.
Schleich, W. P.
Schwertfeger, S.
Wicht, A.
Wörner, L.
contents The INTENTAS project aims to develop an atomic sensor utilizing entangled Bose-Einstein condensates (BECs) in a microgravity environment. This key achievement is necessary to advance the capability for measurements that benefit from both entanglement-enhanced sensitivities and extended interrogation times. The project addresses significant challenges related to size, weight, and power management (SWaP) specific to the experimental platform at the Einstein-Elevator in Hannover. The design ensures a low-noise environment essential for the creation and detection of entanglement. Additionally, the apparatus features an innovative approach to the all-optical creation of BECs, providing a flexible system for various configurations and meeting the requirements for rapid turnaround times. Successful demonstration of this technology in the Einstein-Elevator will pave the way for a future deployment in space, where its potential applications will unlock high-precision quantum sensing.
format Preprint
id arxiv_https___arxiv_org_abs_2409_01051
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle INTENTAS -- An entanglement-enhanced atomic sensor for microgravity
Anton, O.
Bröckel, I.
Derr, D.
Fieguth, A.
Franzke, M.
Gärtner, M.
Giese, E.
Haase, J. S.
Hamann, J.
Heidt, A.
Kanthak, S.
Klempt, C.
Kruse, J.
Krutzik, M.
Kubitza, S.
Lotz, C.
Müller, K.
Pahl, J.
Rasel, E. M.
Schiemangk, M.
Schleich, W. P.
Schwertfeger, S.
Wicht, A.
Wörner, L.
Instrumentation and Detectors
Quantum Gases
Atomic Physics
Space Physics
Quantum Physics
The INTENTAS project aims to develop an atomic sensor utilizing entangled Bose-Einstein condensates (BECs) in a microgravity environment. This key achievement is necessary to advance the capability for measurements that benefit from both entanglement-enhanced sensitivities and extended interrogation times. The project addresses significant challenges related to size, weight, and power management (SWaP) specific to the experimental platform at the Einstein-Elevator in Hannover. The design ensures a low-noise environment essential for the creation and detection of entanglement. Additionally, the apparatus features an innovative approach to the all-optical creation of BECs, providing a flexible system for various configurations and meeting the requirements for rapid turnaround times. Successful demonstration of this technology in the Einstein-Elevator will pave the way for a future deployment in space, where its potential applications will unlock high-precision quantum sensing.
title INTENTAS -- An entanglement-enhanced atomic sensor for microgravity
topic Instrumentation and Detectors
Quantum Gases
Atomic Physics
Space Physics
Quantum Physics
url https://arxiv.org/abs/2409.01051