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cwf:start [2016/10/12 17:34] markuscwf:start [2016/11/07 17:15] (current) markus
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 References for this namespace are collected [[:refnotes:cwf|here]]. References for this namespace are collected [[:refnotes:cwf|here]].
  
-The formulation of quantum mechanics on $3N$-dimensional configuration space has been considered unfavourably since the early advent of the theory and is the main source of computational difficulties due to the exponential growth of data with particle number $N$. De Broglie expressed at the 1927 Solvay conference that+The formulation of quantum mechanics on //3N//-dimensional configuration space has been considered unfavourably since the early advent of the theory and is the main source of computational difficulties due to the exponential growth of data when the particle number $N$ augments. De Broglie expressed at the 1927 Solvay conference that
  
-> "if one wants to //physically// represent the evolution of a system of corpuscles, one must consider the propagation of $Nwaves in space." [(:cite:cwf:norsen2015)]+> "if one wants to //physically// represent the evolution of a system of corpuscles, one must consider the propagation of //N// waves in space." [(:cite:cwf:norsen2015)]
  
 And Schrödinger hoped that And Schrödinger hoped that
  
-> "in the end everything will indeed become intelligible in three dimensions again."+> "in the end everything will indeed become intelligible in three dimensions again." [(:cite:cwf:norsen2015)] 
 + 
 +This hints towards a concept of one-particle wave functions or the wave function of a subsystem respectively, a concept that quantum mechanics usually prohibits through the effects of entanglement. But by fixing certain coordinates of the many-particle wave function to [[Bohmian trajectory|Bohmian trajectories]] the resulting one-particle [[conditional wave function]] will be determined by a non-unitary and non-linear (already including [[wave function collapse]]), non-autonomous (depending on the full wave function) [[conditional evolution equation]]. This equation incorporates an effective potential origination from the so-called [[potential network]] summing up all effects originating from entanglement to the missing particles. By choosing suitable [[approximations]] an efficient calculation of trajectories is possible. 
 + 
 +Originally such a scheme was seemingly first proposed by [(:cite:cwf:prezhdo2001)] while in [(:cite:cwf:gindensperger2000)] a very similar idea is employed, where quantum and classical (Bohmian) position lead to a mixed dynamics. In [(:cite:cwf:struyve2015)] the concept is extended to QED and even to quantum gravity.
cwf/start.1476286486.txt.gz · Last modified: 2016/10/12 17:34 by markus

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