Oscillation Theorem
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Let us concentrate on the bound states of a set of wave functions. Let be an eigenstate with energy and an eigenstate with energy , and . We also can set boundary conditions, where both and vanish at .This implies that
- Failed to parse (SVG (MathML can be enabled via browser plugin): Invalid response ("Math extension cannot connect to Restbase.") from server "https://wikimedia.org/api/rest_v1/":): {\displaystyle -\frac{\hbar^2}{2m}\psi_2\frac{\partial^2 \psi_1}{\partial x^2}+V(x)\psi_2\psi_1=E_1\psi_2\psi_1\!}
Subtracting the second of these from the first and simplifying, we see that
If we now integrate both sides of this equation from to any position and simplify, we see that
The key is to now let be the first position to the right of where vanishes.
Now, if we assume that does not vanish at or between and , then it is easy to see that the left hand side of the previous equation has a different sign from that of the right hand side, and thus it must be true that must vanish at least once between and if .