Mathematical constant
Evolution of the sequence
x
n
+
1
=
(
1
+
1
/
x
n
)
n
{\displaystyle x_{n+1}=(1+1/x_{n})^{n}}
for several values of
x
1
{\displaystyle x_{1}}
, around the Foias constant
α α -->
{\displaystyle \alpha }
. Evolution for
x
1
=
α α -->
{\displaystyle x_{1}=\alpha }
is in green. Other initial values lead to two accumulation points, 1 and
∞ ∞ -->
{\displaystyle \infty }
. A logarithmic scale is used.
In mathematical analysis , the Foias constant is a real number named after Ciprian Foias .
It is defined in the following way: for every real number x 1 > 0, there is a sequence defined by the recurrence relation
x
n
+
1
=
(
1
+
1
x
n
)
n
{\displaystyle x_{n+1}=\left(1+{\frac {1}{x_{n}}}\right)^{n}}
for n = 1, 2, 3, .... The Foias constant is the unique choice α such that if x 1 = α then the sequence diverges to infinity. For all other values of x 1 , the sequence is divergent as well, but it has two accumulation points : 1 and infinity.[ 1] Numerically, it is
α α -->
=
1.187452351126501
… … -->
{\displaystyle \alpha =1.187452351126501\ldots }
.[ 2]
No closed form for the constant is known.
When x 1 = α then the growth rate of the sequence (x n ) is given by the limit
lim
n
→ → -->
∞ ∞ -->
x
n
log
-->
n
n
=
1
,
{\displaystyle \lim _{n\to \infty }x_{n}{\frac {\log n}{n}}=1,}
where "log" denotes the natural logarithm .[ 1]
The same methods used in the proof of the uniqueness of the Foias constant may also be applied to other similar recursive sequences.[ 3]
See also
Notes and references
^ a b Ewing, J. and Foias, C. "An Interesting Serendipitous Real Number." In Finite versus Infinite: Contributions to an Eternal Dilemma (Ed. C. Caluse and G. Păun). London: Springer-Verlag, pp. 119–126, 2000.
^ Sloane, N. J. A. (ed.). "Sequence A085848 (Decimal expansion of Foias's Constant)" . The On-Line Encyclopedia of Integer Sequences . OEIS Foundation.
^ Anghel, Nicolae (2018), "Foias numbers" (PDF) , An. Ştiinţ. Univ. "Ovidius" Constanţa Ser. Mat. , 26 (3): 21– 28, doi :10.2478/auom-2018-0030 , S2CID 195842026
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