Quantum Theory of Computation and Relativistic Physics
Quantum Physics
2008-02-03 v4
Abstract
In the e-print is discussed a few steps to introducing of "vocabulary" of relativistic physics in quantum theory of information and computation (QTI&C). The behavior of a few simple quantum systems those are used as models in QTI&C is tested by usual relativistic tools (transformation properties of wave vectors, etc.). Massless and charged massive particles with spin 1/2 are considered. Field theory is also discussed briefly.
Cite
@article{arxiv.quant-ph/9701027,
title = {Quantum Theory of Computation and Relativistic Physics},
author = {Alexander Yu. Vlasov},
journal= {arXiv preprint arXiv:quant-ph/9701027},
year = {2008}
}
Comments
6 pages, LaTeX2e, 2 columns, 4 PostScript figures are included by epsfig.sty; based on poster in Proc. PhysComp '96 Workshop (BU, Boston MA, 22-24 Nov 1996) pp. 332-333, a "no-go" result for bounded quantum networks; v3/4 -- typos corrected, minor changes