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hamiltonian [2016/09/08 22:46]
nikolaj
hamiltonian [2016/09/08 22:47]
nikolaj
Line 18: Line 18:
 $u = w + \Delta_{wu}$ $u = w + \Delta_{wu}$
  
-the evolution is described by individually non-measurable oscillations ${\mathrm e}^{-iw}$ resp. ${\mathrm e}^{-iv}$ and, given we can rescale $w$ e.g. to $2\pi$, what's interesting is ${\mathrm e}^{-i\Delta_{wu}}$,​ capturing how much faster the second state oscillates.+the evolution is described by individually non-measurable oscillations ${\mathrm e}^{-iw}$ resp. ${\mathrm e}^{-iv}={\mathrm e}^{-iu}{\mathrm e}^{-i\Delta_{wu}}$ ​and what's interesting is the second factor, capturing how much faster the second state oscillates.
  
-== Superposition ​state ==+== Superposition ​states ​==
 For For
  
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