Transfer operator

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28 year-old Painting Investments Worker Truman from Regina, usually spends time with pastimes for instance interior design, property developers in new launch ec Singapore and writing. Last month just traveled to City of the Renaissance. Template:Probability distribution In probability theory and statistics, the Lévy distribution, named after Paul Lévy, is a continuous probability distribution for a non-negative random variable. In spectroscopy, this distribution, with frequency as the dependent variable, is known as a van der Waals profile.[note 1] It is a special case of the inverse-gamma distribution.

It is one of the few distributions that are stable and that have probability density functions that can be expressed analytically, the others being the normal distribution and the Cauchy distribution. All three are special cases of the stable distributions, which do not generally have a probability density function which can be expressed analytically.

Definition

The probability density function of the Lévy distribution over the domain xμ is

f(x;μ,c)=c2πec2(xμ)(xμ)3/2

where μ is the location parameter and c is the scale parameter. The cumulative distribution function is

F(x;μ,c)=erfc(c2(xμ))

where erfc(z) is the complementary error function. The shift parameter μ has the effect of shifting the curve to the right by an amount μ, and changing the support to the interval [μ, ). Like all stable distributions, the Levy distribution has a standard form f(x;0,1) which has the following property:

f(x;μ,c)dx=f(y;0,1)dy

where y is defined as

y=xμc

The characteristic function of the Lévy distribution is given by

φ(t;μ,c)=eiμt2ict.

Note that the characteristic function can also be written in the same form used for the stable distribution with α=1/2 and β=1:

φ(t;μ,c)=eiμt|ct|1/2(1isign(t)).

Assuming μ=0, the nth moment of the unshifted Lévy distribution is formally defined by:

mn=defc2π0ec/2xxnx3/2dx

which diverges for all n > 0 so that the moments of the Lévy distribution do not exist. The moment generating function is then formally defined by:

M(t;c)=defc2π0ec/2x+txx3/2dx

which diverges for t>0 and is therefore not defined in an interval around zero, so that the moment generating function is not defined per se. Like all stable distributions except the normal distribution, the wing of the probability density function exhibits heavy tail behavior falling off according to a power law:

limxf(x;μ,c)=c2π1x3/2.

This is illustrated in the diagram below, in which the probability density functions for various values of c and μ=0 are plotted on a log-log scale.

Probability density function for the Lévy distribution on a log-log scale.


Related distributions

Applications

  • The length of the path followed by a photon in a turbid medium follows the Lévy distribution.[1]

Footnotes

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Notes

43 year old Petroleum Engineer Harry from Deep River, usually spends time with hobbies and interests like renting movies, property developers in singapore new condominium and vehicle racing. Constantly enjoys going to destinations like Camino Real de Tierra Adentro.

References

External links



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  • Lévy and stock prices

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  1. Rogers, Geoffrey L, Multiple path analysis of reflectance from turbid media. Journal of the Optical Society of America A, 25:11, p 2879-2883 (2008).
  2. Template:Cite web