# Bibliography & References Selected references supporting the mathematics, quantitative-finance models, numerical methods, and software used in the notebook series. Exercise-only and redundant lookup references have been removed so this file reflects the material that remains in the public project. ## Brownian motion and stochastic calculus - **Mörters, P. & Peres, Y.** *Brownian Motion.* Cambridge University Press, 2010. - **Karatzas, I. & Shreve, S. E.** *Brownian Motion and Stochastic Calculus.* Springer, 2nd ed., 1991. - **Klebaner, F. C.** *Introduction to Stochastic Calculus with Applications.* Imperial College Press, 3rd ed., 2012. - **Shreve, S. E.** *Stochastic Calculus for Finance II: Continuous-Time Models.* Springer, 2004. - **Øksendal, B.** *Stochastic Differential Equations.* Springer, 6th ed., 2003. - **Protter, P. E.** *Stochastic Integration and Differential Equations.* Springer, 2nd ed., 2005. - **Bachelier, L.** “Théorie de la spéculation.” *Annales scientifiques de l’École Normale Supérieure* 17 (1900). Historical origin of Brownian price modelling. ## Quantitative-finance models and barrier problems - **Hull, J. C.** *Options, Futures, and Other Derivatives.* Pearson, 11th ed., 2021. - **Joshi, M. S.** *The Concepts and Practice of Mathematical Finance.* Cambridge University Press, 2nd ed., 2008. - **Glasserman, P.** *Monte Carlo Methods in Financial Engineering.* Springer, 2003. - **Cont, R. & Tankov, P.** *Financial Modelling with Jump Processes.* Chapman & Hall/CRC, 2004. ## Gaussian conditioning and numerical linear algebra - **Rasmussen, C. E. & Williams, C. K. I.** *Gaussian Processes for Machine Learning.* MIT Press, 2006. Free full text: . - **Anderson, T. W.** *An Introduction to Multivariate Statistical Analysis.* Wiley, 3rd ed., 2003. - **Revuz, D. & Yor, M.** *Continuous Martingales and Brownian Motion.* Springer, 3rd ed., 1999. - **Golub, G. H. & Van Loan, C. F.** *Matrix Computations.* Johns Hopkins University Press, 4th ed., 2013. - **Strang, G.** *Introduction to Linear Algebra.* Wellesley-Cambridge Press, 6th ed., 2023. Positive-definite matrices and factorisations. Lectures: . - **Trefethen, L. N. & Bau, D.** *Numerical Linear Algebra.* SIAM, 1997. ## Concise online references - **Wiener process / Brownian motion:** - **Itô’s lemma:** - **Geometric Brownian motion:** - **Reflection principle:** - **Brownian bridge:** - **Jump diffusion:** - **Maximum drawdown:** - **Cholesky decomposition:** - **Monte Carlo method:** ## Software and data - **NumPy:** — vectorised simulation, array operations, and Cholesky factorisation. - **SciPy:** — Gaussian distribution functions and numerical utilities. - **Matplotlib:** — notebook figures. - **pandas:** — market-data frames, time indexes, and resampling. - **SymPy:** — symbolic checks in the Itô-calculus notebook. - **Requests:** — HTTP access to the market-data endpoint. ## Conventions Trading time is measured using 252 trading days × 6.5 hours × 60 minutes = 98,280 trading minutes per year. Annualised volatility is scaled by the square root of elapsed trading time.