| Literature DB >> 21636767 |
Sacha Kocsis1, Boris Braverman, Sylvain Ravets, Martin J Stevens, Richard P Mirin, L Krister Shalm, Aephraim M Steinberg.
Abstract
A consequence of the quantum mechanical uncertainty principle is that one may not discuss the path or "trajectory" that a quantum particle takes, because any measurement of position irrevocably disturbs the momentum, and vice versa. Using weak measurements, however, it is possible to operationally define a set of trajectories for an ensemble of quantum particles. We sent single photons emitted by a quantum dot through a double-slit interferometer and reconstructed these trajectories by performing a weak measurement of the photon momentum, postselected according to the result of a strong measurement of photon position in a series of planes. The results provide an observationally grounded description of the propagation of subensembles of quantum particles in a two-slit interferometer.Year: 2011 PMID: 21636767 DOI: 10.1126/science.1202218
Source DB: PubMed Journal: Science ISSN: 0036-8075 Impact factor: 47.728