Title of article
Complex numbers and symmetries in quantum mechanics, and a nonlinear superposition principle for wigner functions
Author/Authors
Bracken، نويسنده , , A.J.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2006
Pages
10
From page
17
To page
26
Abstract
Complex numbers appear in the Hilbert space formulation of quantum mechanics, but not in the formulation in phase space. Quantum symmetries are described by complex, unitary or antiunitary operators defining ray representations, in Hilbert space, whereas in phase space they are described by real, true representations. Equivalence of the formulations requires that the former representations can be obtained from the latter and vice versa. Examples are given. Equivalence of the two formulations also requires that complex superpositions of state vectors can be described in the phase space formulation, and it is shown that this leads to a nonlinear superposition principle for orthogonal, pure-state Wigner functions. It is concluded that the use of complex numbers in quantum mechanics can be regarded as a computational device to simplify calculations, as in all other applications of mathematics to physical phenomena.
Keywords
Wigner functions , complex quantum mechanics , quantum mechanics in phase space , Nonlinear superposition principle , quantum symmetries
Journal title
Reports on Mathematical Physics
Serial Year
2006
Journal title
Reports on Mathematical Physics
Record number
1585718
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