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cwf:wave_function_collapse

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cwf:wave_function_collapse [2016/10/24 09:58] markuscwf:wave_function_collapse [2016/10/24 09:59] (current) markus
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 So obviously $\pi_-$ measures $\sigma_-$ with probability $|c_-|^2$ and $\pi_+$ measures $\sigma_+$ with probability $|c_+|^2$. If the measurement was performed and we have empiricial evidence of either pointer position $\pi_-$ or $\pi_+$. Setting this outcome as the fixed coordinate in the [[conditional wave function]] we automatically collapse to $c_+\sigma_+$ or $c_-\sigma_-$ respectively. So obviously $\pi_-$ measures $\sigma_-$ with probability $|c_-|^2$ and $\pi_+$ measures $\sigma_+$ with probability $|c_+|^2$. If the measurement was performed and we have empiricial evidence of either pointer position $\pi_-$ or $\pi_+$. Setting this outcome as the fixed coordinate in the [[conditional wave function]] we automatically collapse to $c_+\sigma_+$ or $c_-\sigma_-$ respectively.
  
-A derivation which uses continuous coordinates instead of discrete ones can be done analogously, see for example [(:cite:cwf:norson2015)] (§2.4).+A derivation which uses continuous coordinates instead of discrete ones can be done analogously, see for example [(:cite:cwf:norsen2015)] (§2.4).
cwf/wave_function_collapse.1477295937.txt.gz · Last modified: 2016/10/24 09:58 by markus

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