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A principal of linear covariance for quantum mechanics and its consequences taking one beyond symmetry

dc.contributor.authorSinanoglu, O
dc.date.accessioned2026-06-27T12:58:19Z
dc.date.issued1997
dc.description.abstractA Principle of Linear Covariance is stated which follows from the ''superposition principle'' of quantum mechanics. Accordingly, quantum mechanical equations should be written in linearly covariant form which makes them look the same under non-unitary as well as unitary transformations. The principle leads to a non-unitary classification of all molecules (and clusters and solids) into distinct equivalence classes giving hitherto unknown relations between isomeric molecules. One also gets kinetic and thermic selection rules for chemical reactions. All these are independent of, and far more general than any unitary or point group symmetries. The invariants found for each class of molecules or clusters allow qualitative electronic deductions and are more generally applicable than symmetry based quantum numbers.en
dc.description.urihttps://doi.org/10.1515/zna-1997-1-213
dc.identifier.doi10.1515/zna-1997-1-213
dc.identifier.endpage48
dc.identifier.issn0932-0784
dc.identifier.issue1-2
dc.identifier.startpage46
dc.identifier.urihttps://hdl.handle.net/20.500.14981/48366
dc.identifier.volume52
dc.identifier.wosA1997WP81900012
dc.language.isoeng
dc.publisherVERLAG Z NATURFORSCH
dc.relation.ispartofZEITSCHRIFT FUR NATURFORSCHUNG SECTION A-A JOURNAL OF PHYSICAL SCIENCES
dc.rightsopenAccess
dc.subjectATOM CLUSTERS
dc.subjectMOLECULES
dc.subjectDEDUCTIONS
dc.subjectCHEMISTRY
dc.subjectGRAPHS
dc.subjectPhysics
dc.titleA principal of linear covariance for quantum mechanics and its consequences taking one beyond symmetry
dc.typeArticle
dspace.entity.typePublication
local.import.sourceWOS

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