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arxiv: 1608.00511 · v1 · pith:SRWSQQCBnew · submitted 2016-08-01 · 🧮 math.NA

On Finite difference schemes for partial integro-differential equations of L\'evy type

classification 🧮 math.NA
keywords deltaoperatororderintegro-differentialestimatesballdifferencedownarrow
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In this article we introduce a finite difference approximation for integro-differential operators of L\'evy type. We approximate solutions of integro-differential equations, where the second order operator is allowed to degenerate. In the existing literature, the L\'evy operator is treated as a zero/first order operator outside of a centered ball of radius $\delta$, leading to error estimates of order $\xi (\delta)+N(\delta)(h+\sqrt{\tau})$, where $h$ and $\tau$ are the spatial and temporal discretization parameters respectively. In these estimates $\xi (\delta) \downarrow 0$, but $N(\delta )\uparrow \infty$ as $\delta \downarrow 0$. In contrast, we treat the integro-differential operator as a second order operator on the whole unit ball. By this method we obtain error estimates of order $(h+\tau^k)$ for $k\in \{1/2,1\}$, eliminating the additional errors and the blowing up constants. Moreover, we do not pose any conditions on the L\'evy measure.

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