Finding 4013Emerging EvidenceValidation V0
Employing fractional derivatives and a hybrid numerical framework, this paper presents a $$\text{time-fractional Black-Scholes model}$$ solution that integrates the $$\text{Liouville-Caputo scheme}$$, $\text{Strang splitting}$, and a meshless method based on remarkably robust Lucas--Fibonacci polynomials for vanilla and exotic options. Its originality, novelty, and rigor offer uniquely impactful contribution yielding practical insights.
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Supporting78% linkage confidence
Employing fractional derivatives and a hybrid numerical framework, this paper presents a $$\text{time-fractional Black-Scholes model}$$ solution that integrates the $$\text{Liouville-Caputo scheme}$$, $\text{Strang splitting}$, and a meshless method based on remarkably robust Lucas--Fibonacci polynomials for vanilla and exotic options. Its originality, novelty, and rigor offer uniquely impactful contribution yielding practical insights.
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Inspect source: Exploring Fractional-Order Models in Computational Finance via an Efficient Hybrid Approach →This Finding was extracted from the configured corpus. It is versioned, traceable, and may evolve through editorial review or new corpus evidence.