Please use this identifier to cite or link to this item: http://hdl.handle.net/2080/5871
Title: High-Order Compact Scheme for Solving the Time-Fractional Black–Scholes Equation with Stability Analysis
Authors: Tarei, Santoshi
Kanaujiya, Ankur
Mohapatra, Jugal
Keywords: Caputo Fractional Derivative
Time-fractional Black-scholes equation
Stability Analysis
Issue Date: Jul-2026
Citation: 4th International Conference on Recent Advances in Applied Mathematics(RAAM), IIT Hyderabad, India, 6-8 July 2026
Abstract: A high-order compact finite difference scheme on a uniform mesh is proposed for solving the timefractional Black-Scholes partial differential equation governing European-type options. The timefractional derivative is discretized using the L2 − 1σ formula, resulting in an overall accuracy of O((Δt)2 +(Δx)4). A rigorous stability and convergence analysis of the proposed scheme is presented. Numerical experiments validate the theoretical results and demonstrate the superior accuracy and computational efficiency of the proposed method compared with existing schemes.
Description: Copyright belongs to the proceeding publisher.
URI: http://hdl.handle.net/2080/5871
Appears in Collections:Conference Papers

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