2013
DOI: 10.1016/j.hedp.2013.04.007
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Regularities and symmetries in atomic structure and spectra

Abstract: The use of statistical methods for the description of complex quantum systems was primarily motivated by the failure of a line-by-line interpretation of atomic spectra. Such methods reveal regularities and trends in the distributions of levels and lines. In the past, much attention was paid to the distribution of energy levels (Wigner surmise, random-matrix model...). However, information about the distribution of the lines (energy and strength) is lacking. Thirty years ago, Learner found empirically an unexpe… Show more

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Cited by 15 publications
(15 citation statements)
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“…(II. 19) One notes that the same recurrence relations formally hold for P (M ) and Q(J). Of course the solutions for P (M ) and Q(J) differ because the initial values (N = 1 or j = 0) are different for P and Q.…”
Section: B Analytical Expression Of the Generating Function And Recur...mentioning
confidence: 84%
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“…(II. 19) One notes that the same recurrence relations formally hold for P (M ) and Q(J). Of course the solutions for P (M ) and Q(J) differ because the initial values (N = 1 or j = 0) are different for P and Q.…”
Section: B Analytical Expression Of the Generating Function And Recur...mentioning
confidence: 84%
“…As shown in Ref. [19] and in Appendix A the present generating-function formalism allows for a simpler derivation of the excess evaluation by computing G (j; N ; −1). Moreover, other sum rules may also be obtained by computing this generating function at other points on the trigonometric circle.…”
Section: B Analytical Expression Of the Generating Function And Recur...mentioning
confidence: 97%
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“…Pain recently reviewed this power law dependence problem and presented a discussion regarding fractal dimension and quantum chaos [6]. According to his discussion, the line strength distribution evaluated under the fully quantum-chaos assumption does not explain Learner's law.…”
mentioning
confidence: 99%
“…According to his discussion, the line strength distribution evaluated under the fully quantum-chaos assumption does not explain Learner's law. As presented in his review [6], as well as in the book [7], the origin of this power law is still not understood, despite almost 40 years passing since the first report.…”
mentioning
confidence: 99%