Toward a test of angular momentum coherence in a twin-atom interferometer
Abstract
We present a scheme well-suited to investigate quantitatively the angular momentum coherence of molecular fragments. Assuming that the dissociated molecule has a null total angular momentum, we investigate the propagation of the corresponding atomic fragments in the apparatus. We show that the envisioned interferometer enables one to distinguish unambiguously a spin-coherent from a spin-incoherent dissociation, as well as to estimate the purity of the angular momentum density matrix associated with the fragments. This setup, which may be seen as an atomic analogue of a twin-photon interferometer, can be used to investigate the suitability of molecule dissociation processes -- such as the metastable hydrogen atoms H()-H() dissociation - for coherent twin-atom optics.
Cite
@article{arxiv.1410.5451,
title = {Toward a test of angular momentum coherence in a twin-atom interferometer},
author = {Carlos R. de Carvalho and Ginette Jalbert and François Impens and J. Robert and Aline Medina and F. Zappa and N. V. de Castro Faria},
journal= {arXiv preprint arXiv:1410.5451},
year = {2015}
}
Comments
6 pages, 3 Figures. Final version accepted for publication in Europhysics Letters