Graph explorer

Dynamics determines geometry

The inverse problem of calculus of variations and $s$-equivalence are re-examined by using results obtained from non-commutative geometry ideas. The role played by the structure of the modified Poisson brackets is discussed in a general context and it is argued that classical $s$-equivalent systems may be non-equivalent at the quantum mechanical level. This last fact is explicitly discussed comparing different approaches to deal with the Nair-Polychronakos oscillator.

7 nodes6 linksoverview mapDynamics determines geometry
7 nodes6 links
Dynamics determines geometry7 visible / 7 total nodes / 9 links
Co-authorshipCo-authorshipCo-authorshipAuthorshipAuthorshipAuthorshipTopic signalTopic signalTopic signalWDynamics determines geometrypreprint / 2012ASergio A. HojmanResearcherAJ. GamboaResearcherAF. MendezResearcherThep-th13268 worksTmath-ph7974 worksTmath.MP7972 works
PaperSignal 106 links

Dynamics determines geometry

preprint / 2012

Open