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There is a page named "Talk:Eigenstate" on Wikipedia

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  • 109 bytes (0 words) - 09:45, 26 January 2024
  • with the same title." yet on this page the distinction is made between "eigenstate" and "eigentaste" which are anagrams of one another, but not the same...
    1 KB (75 words) - 18:51, 6 July 2023
  • I like this explanation of eigenstates. Contrasting this with the wave function, as it does in this article, is a good idea. In addition, using the wave...
    12 KB (1,822 words) - 23:49, 3 February 2024
  • currently an orphan (with no other articles linking to it), and the article "Eigenstate Thermalization Hypothesis," with a different capitalization, was listed...
    17 KB (2,653 words) - 21:52, 17 January 2024
  • change the section "Eigenstates and pure states" to "Eigenstates and mixed states". The section needs to help readers relate eigenstates, the result of a...
    15 KB (2,279 words) - 19:44, 9 June 2024
  • states a quantum systems approaches the measured eigenstate. It does not explain why/how a specific eigenstate is chosen during this process, i.e. why a linear...
    1 KB (130 words) - 14:21, 8 February 2024
  • way you rephrased the beginning of the subsection would imply that the eigenstate of the Position operator; the dirac delta, is a wave function for example...
    9 KB (1,364 words) - 17:35, 2 April 2024
  • it is - in actual applications - exactly the same idea as "eigenstate order". If "eigenstate order" also does not pass the bar, I will pass on creating...
    8 KB (1,197 words) - 03:42, 27 January 2024
  • mass eigenstates. See post 47 in http://www.physicsforums.com/showthread.php?t=115360&page=4 When looked on in this way, while flavor eigenstate neutrinos...
    30 KB (4,541 words) - 09:52, 5 April 2012
  • 2008 (UTC) Eigenstates referred to by symbols: v1, v2, v2m, ve Eigenstate symbols explicitly defined in the article: v2m - High mass eigenstate in mater...
    4 KB (589 words) - 05:34, 6 February 2024
  • as being a vector of strong force eigenstates, since the vector on the right side also is a strong force eigenstate vector. More appropriate would be...
    21 KB (3,165 words) - 17:18, 29 January 2024
  • February 2006 (UTC) (the exception is if a state function is itself an eigenstate) This is not an exception I think, it's just 1 time the eigenfuction,...
    858 bytes (127 words) - 15:05, 24 January 2024
  • Every quantum state is a certain superposition of eigenstates of any potential (since they are complete), so I don't think this something that should...
    25 KB (3,607 words) - 11:51, 27 January 2024
  • one degree of freedom into its eigenstates. Each output channel lets out instances of a system in a labeling eigenstate characteristic of the crystal's...
    52 KB (8,368 words) - 11:13, 9 March 2016
  • such a thing would be an eigenstate of momentum. (Please see my article on introduction to eigenstates). It is not an eigenstate of a momentum operator...
    38 KB (5,661 words) - 05:20, 7 January 2024
  • correct, it should read psi = (|1-> + |0+>) / sqrt(2). Since |1> is the eigenstate to the -1 eigenvalue of sigmaz, it needs to be combined with |-> instead...
    1 KB (141 words) - 17:46, 30 January 2024
  • wave function—initially in a superposition of several eigenstates—reduces to a single eigenstate due to interaction with the external world. Later in this...
    9 KB (1,159 words) - 04:30, 1 April 2024
  • extra-long lifetime for one weak eigenstate is unique to kaons. Thus for the other neutrals, only the strong eigenstates are considered particles, and those...
    23 KB (2,489 words) - 09:30, 5 February 2024
  • Note that completeness of the eigenstates of a Hermitian operator is not guaranteed, but it is extremely common for physical systems. For example, any...
    537 bytes (79 words) - 18:48, 3 February 2003
  • any body outside the solar system in any of the (remaining) possible eigenstates that define the position. Now since we don't really understand background...
    11 KB (1,646 words) - 14:21, 8 February 2024
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