4.8 Article

Motional Dynamical Decoupling for Interferometry with Macroscopic Particles

期刊

PHYSICAL REVIEW LETTERS
卷 125, 期 2, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.125.023602

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资金

  1. European Research Council (ERC) via the Synergy grant BioQ [319130]
  2. European Union (EU)
  3. Bundesministeriums fur Bildung und Forschung (BMBF)
  4. state of Baden-Wurttemberg through bwHPC
  5. Deutsche Forschungsgemeinschaft (DFG) [INST 40/467-1 FUGG]
  6. Alexander von Humboldt Foundation
  7. Engineering and Physical Sciences Research Council (EPSRC) [EP/T001062/1, EP/M013243/1]
  8. Royal Society
  9. EPSRC [EP/M013243/1, EP/T001062/1] Funding Source: UKRI

向作者/读者索取更多资源

We extend the concept of dynamical decoupling from spin to mechanical degrees of freedom of macroscopic objects, for application in interferometry. In this manner, the superposition of matter waves can be made resilient to many important sources of noise when these are driven along suitable paths in space. As a concrete implementation, we present the case of levitated (or free falling) nanodiamonds hosting a color center in a magnetic field gradient. We point out that these interferometers are inherently affected by diamagnetic forces, which restrict the separation of the superposed states to distances that scale with the inverse of the magnetic field gradient. Periodic forcing of the mechanical degree of freedom is shown to overcome this limitation, achieving a linear-in-time growth of the separation distance independent of the magnetic field gradient, while simultaneously protecting the coherence of the superposition from environmental perturbations.

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