We describe our experiment MAGIA (misura accurata di G mediante interferometria atomica), in which we will use atom interferometry to perform a high precision measurement of the Newtonian gravitational constant G. Free-falling laser-cooled atoms in a vertical atomic fountain will be accelerated due to the gravitational potential of nearby source masses (SMs). Detecting this acceleration with techniques of Raman atom interferometry will enable us to assign a value to G. To suppress systematic effects we will implement a double-differential measurement. This includes launching two atom clouds in a gradiometer configuration and moving the SMs to different vertical positions. We briefly summarize the general idea of the MAGIA experiment and put it in the context of other high precision G-measurements. We present the current status of the experiment and report on analyses of the expected measurement accuracy.

MAGIA – Using atom interferometry to determine the Newtonian gravitational constant / J. STUHLER; M. FATTORI; T. PETELSKI; G.M. TINO. - In: JOURNAL OF OPTICS. - ISSN 1464-4266. - STAMPA. - 5:(2003), pp. S75-S75. [10.1088/1464-4266/5/2/361]

MAGIA – Using atom interferometry to determine the Newtonian gravitational constant

FATTORI, MARCO;TINO, GUGLIELMO MARIA
2003

Abstract

We describe our experiment MAGIA (misura accurata di G mediante interferometria atomica), in which we will use atom interferometry to perform a high precision measurement of the Newtonian gravitational constant G. Free-falling laser-cooled atoms in a vertical atomic fountain will be accelerated due to the gravitational potential of nearby source masses (SMs). Detecting this acceleration with techniques of Raman atom interferometry will enable us to assign a value to G. To suppress systematic effects we will implement a double-differential measurement. This includes launching two atom clouds in a gradiometer configuration and moving the SMs to different vertical positions. We briefly summarize the general idea of the MAGIA experiment and put it in the context of other high precision G-measurements. We present the current status of the experiment and report on analyses of the expected measurement accuracy.
2003
5
S75
S75
J. STUHLER; M. FATTORI; T. PETELSKI; G.M. TINO
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/224294
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