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Date: 21-5-2018
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Date: 12-6-2018
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The Bessel differential equation is the linear second-order ordinary differential equation given by
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(1) |
Equivalently, dividing through by ,
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(2) |
The solutions to this equation define the Bessel functions and
. The equation has a regular singularity at 0 and an irregular singularity at
.
A transformed version of the Bessel differential equation given by Bowman (1958) is
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(3) |
The solution is
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(4) |
where
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(5) |
and
are the Bessel functions of the first and second kinds, and
and
are constants. Another form is given by letting
,
, and
(Bowman 1958, p. 117), then
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(6) |
The solution is
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REFERENCES:
Abramowitz, M. and Stegun, I. A. (Eds.). §9.1.1 in Handbook of Mathematical Functions with Formulas, Graphs, and Mathematical Tables, 9th printing. New York: Dover, 1972.
Bowman, F. Introduction to Bessel Functions. New York: Dover, 1958.
Morse, P. M. and Feshbach, H. Methods of Theoretical Physics, Part I. New York: McGraw-Hill, p. 550, 1953.
Zwillinger, D. (Ed.). CRC Standard Mathematical Tables and Formulae. Boca Raton, FL: CRC Press, p. 413, 1995.
Zwillinger, D. Handbook of Differential Equations, 3rd ed. Boston, MA: Academic Press, p. 121, 1997.
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