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A comparative analysis of generalized exponential decay

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This paper explores the similarities and differences between the Mittag-Leffler function and a recently introduced one-parameter function, when (α, q) ∈ (0, 1)—where α is called the fractional parameter and q is called the entropic parameter, respectively. We use the half-life of Oxygen-22—an isotope of oxygen—to determine a q-analog of the decay constant. This enabled us to utilize the Tsallis logarithmic function and generate various plots depicting generalized exponential decay. Thereafter, a comparison is made with the Mittag-Leffler function once we establish the fractional analog of the nuclear disintegration law—the fractional radioactive decay law. Hence, we show that when compared to each other, the Mittag-Leffler function generated faster decaying rates in the limiting case when (α, q) → 1.
Center for Open Science
Title: A comparative analysis of generalized exponential decay
Description:
This paper explores the similarities and differences between the Mittag-Leffler function and a recently introduced one-parameter function, when (α, q) ∈ (0, 1)—where α is called the fractional parameter and q is called the entropic parameter, respectively.
We use the half-life of Oxygen-22—an isotope of oxygen—to determine a q-analog of the decay constant.
This enabled us to utilize the Tsallis logarithmic function and generate various plots depicting generalized exponential decay.
Thereafter, a comparison is made with the Mittag-Leffler function once we establish the fractional analog of the nuclear disintegration law—the fractional radioactive decay law.
Hence, we show that when compared to each other, the Mittag-Leffler function generated faster decaying rates in the limiting case when (α, q) → 1.

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