In response to a letter from Goldbach, Euler considered sums of
the form
with and and where is the Euler-Mascheroni
constant and
is the digamma function . Euler found explicit
formulas in terms of the Riemann zeta function
for with , and E. Au-Yeung numerically discovered
(3)
where is the Riemann
zeta function , which was subsequently rigorously proven true (Borwein and Borwein
1995). Sums involving
can be re-expressed in terms of sums the form via
and
(7)
where is defined below.
Bailey et al. (1994) subsequently considered sums of
the forms
where and have the special forms
where is a generalized harmonic
number .
A number of these sums can be expressed in terms of the multivariate
zeta function , e.g.,
(19)
(Bailey et al. 2006a, p. 39, sign corrected; Bailey et al. 2006b).
Special cases include
(20)
(P. Simone, pers. comm., Aug. 30, 2004).
Analytic single or double sums over can be constructed for
where is a binomial
coefficient . Explicit formulas inferred using the PSLQ
algorithm include
for ,
for , given as a challenge problem by Borwein
and Bailey (2003, pp. 24-25) and discussed in Bailey et al. (2006a, p. 39;
Bailey et al. 2006b),
for , and
for , where is a polylogarithm , and
is the Riemann
zeta function (Bailey and Plouffe 1997, Bailey et al. 1994). Of these,
only (P. Simone, pers. comm.,
Aug. 30, 2004), ,
and the identities for , and have been rigorously established.
See also Multiple Series ,
Multivariate
Zeta Function
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References Adamchik, V. "On Stirling Numbers and Euler Sums." J. Comput. Appl. Math. 79 , 119-130, 1997. http://www-2.cs.cmu.edu/~adamchik/articles/stirling.htm . Bailey,
D. H.; Borwein, J. M.; Calkin, N. J.; Girgensohn, R.; Luke, D. R.;
and Moll, V. H. Experimental
Mathematics in Action. Wellesley, MA: A K Peters, 2006. https://web.archive.org/web/20070202172917/http://crd.lbl.gov/~dhbailey/expmath/maa-course/hyper-ema.pdf . Bailey,
D. H.; Borwein, J. M.; and Girgensohn, R. "Experimental Evaluation
of Euler Sums." Exper. Math. 3 , 17-30, 1994. Bailey,
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Problems in Experimental Mathematics." Amer. Math. Monthly 113 ,
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Constants." Organic
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Ramanujan's
Notebooks: Part I. New York: Springer-Verlag, 1985. Borwein,
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and Some Series Related to ."
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Proc. Edinburgh Math. Soc. 38 , 277-294, 1995. Borwein,
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K Peters, pp. 56-58, 2003. Borwein, J. M.; Bradley, D. M.;
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Polylogarithms." Trans. Amer. Math. Soc. 353 , 907-941, 2001. Boyadzhiev,
K. N. "Evaluation of Euler-Zagier Sums." Int. J. Math. Math. Sci. 27 ,
407-412, 2001. http://www2.onu.edu/~kboyadzh/e-zagier.pdf . Boyadzhiev,
K. N. "Consecutive Evaluation of Euler Sums." Int. J. Math. Math.
Sci. 29 , 555-561, 2002. http://www2.onu.edu/~kboyadzh/euler-c(1).pdf . Broadhurst,
D. J. "On the Enumeration of Irreducible -Fold Euler Sums and Their Roles in Knot Theory and Field Theory."
April 22, 1996. https://arxiv.org/abs/hep-th/9604128 . Broadhurst,
D. J. "Massive 3-Loop Feynman Diagrams Reducible to Primitives of Algebras of the Sixth Root of Unity."
March 11, 1998. https://arxiv.org/abs/hep-th/9803091 . de
Doelder, P. J. "On Some Series Containing and for Certain Values of and ."
J. Comp. Appl. Math. 37 , 125-141, 1991. Ferguson, H. R. P.;
Bailey, D. H.; and Arno, S. "Analysis of PSLQ, An Integer Relation Finding
Algorithm." Math. Comput. 68 , 351-369, 1999. Flajolet,
P. and Salvy, B. "Euler Sums and Contour Integral Representation." Experim.
Math. 7 , 15-35, 1998. Referenced on Wolfram|Alpha Euler Sum
Cite this as:
Weisstein, Eric W. "Euler Sum." From MathWorld --A Wolfram Resource. https://mathworld.wolfram.com/EulerSum.html
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