|
| related topics |
| {temperature, thermal, energy} |
| {force, casimir, field} |
| {wave, scattering, interference} |
| {photon, photons, single} |
| {cavity, atom, atoms} |
| {phase, path, phys} |
| {equation, function, exp} |
| {light, field, probe} |
| {field, particle, equation} |
| {particle, mechanics, theory} |
| {time, wave, function} |
|
Computation of the phase induced by non-newtonian gravitational
potentials in atom interferometry
R. Mathevet, R. Delhuille, C. Rizzo
abstract: In this letter we present a computation of the phase induced by test masses
of different geometry, in the framework of non-newtonian gravitation, on an
ideal separated arms atom interferometer. We deduce the related limits on the
non-newtonian gravitational strength in the sub-millimeter region for the
potential range. These limits would be comparable with the best existing
experimental limits but with the advantage of using a microscopic probe.
- oai_identifier:
- oai:arXiv.org:quant-ph/0202129
- categories:
- quant-ph gr-qc physics.atom-ph
- comments:
- 9 pages, 2 figures, revtex
- doi:
- 10.1088/0264-9381/19/8/101
- arxiv_id:
- quant-ph/0202129
- journal_ref:
- Class.Quant.Grav.19:L37-L44,2002
- created:
- 2002-02-22
Full article ▸
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