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Schrodinger equation quantum statistical mechanics, density

The classical Liouville equation does have an equivalent in quantum mechanics, which is needed for a consistent description of quantum statistical mechanics the quantum Liouville equation. Equilibrium quantum statistical mechanics requires the introduction of the density operator on an appropriate Hilbert space, and the quantum liouvUle equation for the density operator is a logical and necessary extension of the Schrodinger equation. The quantum Liouville equation can even be written, formally at least, in a form that resembles its classical counterpart. It allows for some weak and almost internally consistent form of dissipative dynamics, known as the Redfield theory, which finds its main use in relating NMR relaxation times to spectral densities arising from solvent fluctuations, although in recent... [Pg.214]

In equilibrium statistical mechanics involving quantum effects, we need to know the density matrix in order to calculate averages of the quantities of interest. This density matrix is the quantum analog of the classical Boltzmann factor. It can be obtained by solving a differential equation very similar to the time-dependent Schrodinger equation... [Pg.395]

So far we have not accomplished anything, except for a complicated rewrite of the Schrodinger equation. At this stage, the information content of both descriptions is exactly the same. However, the density matrix allows a description of quantum mechanical systems that is far broader than the wave function. To see that and why it is necessary, we move to quantum statistical physics. [Pg.237]


See other pages where Schrodinger equation quantum statistical mechanics, density is mentioned: [Pg.75]    [Pg.456]    [Pg.11]    [Pg.224]    [Pg.104]    [Pg.72]    [Pg.485]    [Pg.2]    [Pg.363]    [Pg.224]    [Pg.33]   


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