Literature DB >> 27740804

Free Nano-Object Ramsey Interferometry for Large Quantum Superpositions.

C Wan1, M Scala1, G W Morley2, Atm A Rahman2,3, H Ulbricht4, J Bateman5, P F Barker3, S Bose3, M S Kim1.   

Abstract

We propose an interferometric scheme based on an untrapped nano-object subjected to gravity. The motion of the center of mass (c.m.) of the free object is coupled to its internal spin system magnetically, and a free flight scheme is developed based on coherent spin control. The wave packet of the test object, under a spin-dependent force, may then be delocalized to a macroscopic scale. A gravity induced dynamical phase (accrued solely on the spin state, and measured through a Ramsey scheme) is used to reveal the above spatially delocalized superposition of the spin-nano-object composite system that arises during our scheme. We find a remarkable immunity to the motional noise in the c.m. (initially in a thermal state with moderate cooling), and also a dynamical decoupling nature of the scheme itself. Together they secure a high visibility of the resulting Ramsey fringes. The mass independence of our scheme makes it viable for a nano-object selected from an ensemble with a high mass variability. Given these advantages, a quantum superposition with a 100 nm spatial separation for a massive object of 10^{9}  amu is achievable experimentally, providing a route to test postulated modifications of quantum theory such as continuous spontaneous localization.

Year:  2016        PMID: 27740804     DOI: 10.1103/PhysRevLett.117.143003

Source DB:  PubMed          Journal:  Phys Rev Lett        ISSN: 0031-9007            Impact factor:   9.161


  1 in total

1.  Realization of a complete Stern-Gerlach interferometer: Toward a test of quantum gravity.

Authors:  Yair Margalit; Or Dobkowski; Zhifan Zhou; Omer Amit; Yonathan Japha; Samuel Moukouri; Daniel Rohrlich; Anupam Mazumdar; Sougato Bose; Carsten Henkel; Ron Folman
Journal:  Sci Adv       Date:  2021-05-28       Impact factor: 14.136

  1 in total

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