4.4 Article

STE-QUEST-test of the universality of free fall using cold atom interferometry

期刊

CLASSICAL AND QUANTUM GRAVITY
卷 31, 期 11, 页码 -

出版社

IOP PUBLISHING LTD
DOI: 10.1088/0264-9381/31/11/115010

关键词

atom interferometry; equivalence principle; cold atoms; Bose-Einstein condensates; microgravity; quantum gravity; space physics

资金

  1. Federal Ministry of Economics and Technology [50 OY 1302, 50 OY 1303, 50 OY 1304]
  2. German Research Foundation (DFG)
  3. French Space Agency Centre National d'Etudes Spatiales
  4. European Space Agency (ESA)
  5. German space agency 'Deutsches Zentrum fur Luft- und Raumfahrt (DLR)
  6. EPSRC [EP/E036473/1] Funding Source: UKRI
  7. Engineering and Physical Sciences Research Council [EP/E036473/1] Funding Source: researchfish

向作者/读者索取更多资源

The theory of general relativity describes macroscopic phenomena driven by the influence of gravity while quantum mechanics brilliantly accounts for microscopic effects. Despite their tremendous individual success, a complete unification of fundamental interactions is missing and remains one of the most challenging and important quests in modern theoretical physics. The spacetime explorer and quantum equivalence principle space test satellite mission, proposed as a medium-size mission within the Cosmic Vision program of the European Space Agency (ESA), aims for testing general relativity with high precision in two experiments by performing a measurement of the gravitational redshift of the Sun and the Moon by comparing terrestrial clocks, and by performing a test of the universality of free fall of matter waves in the gravitational field of Earth comparing the trajectory of two Bose-Einstein condensates of Rb-85 and Rb-87. The two ultracold atom clouds are monitored very precisely thanks to techniques of atom interferometry. This allows to reach down to an uncertainty in the Eotvos parameter of at least 2 x 10(-15). In this paper, we report about the results of the phase A mission study of the atom interferometer instrument covering the description of the main payload elements, the atomic source concept, and the systematic error sources.

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