Interest rate trees provide a clear, flexible framework for valuing fixed-income securities and derivatives when rates can move through time. This book presents the subject in a structured progression, beginning with the essential mathematics of discounting and no-arbitrage, then advancing to calibrated short-rate models, bond valuation, embedded options, swaps, swaptions, and risk management.
Readers first review time value of money, spot rates, forward rates, discount factors, state prices, and risk-neutral valuation. The discussion then turns to market conventions, including yield-to-maturity, compounding frequencies, day-count rules, settlement dates, accrued interest, and the instruments commonly used to construct a term structure.
From Market Quotes to a Calibrated TreeStep by step, the book explains how to bootstrap discount factors and spot rates from coupon-bearing and zero-coupon instruments. It covers interpolation, forward-rate consistency, curve validation, and complete yield-curve construction examples. Readers learn how to design recombining and nonrecombining trees, specify upward and downward movements, apply risk-neutral probabilities, and solve for node rates and model parameters that match observed zero-coupon bond prices.
Build and validate an initial term structure.Construct two-period and multi-step short-rate lattices.Use numerical root-finding to calibrate model parameters.Diagnose pricing and calibration errors through worked examples.Pricing Bonds and Interest Rate DerivativesWith the lattice in place, backward induction becomes the central valuation tool. The book demonstrates how to price default-free and coupon bonds at each node, separate principal and coupon effects, and compare prices, yields, duration, and convexity. It also shows how issuer call decisions and holder put decisions are incorporated directly into node-by-node valuation.
Dedicated chapters address European calls and puts, caplets, floorlets, caps, floors, Bermudan swaptions, American-style bond options, fixed-for-floating swaps, and forward swap values. Clear treatment of settlement timing, payment conventions, exercise rights, call and put schedules, notice periods, and continuation values helps connect formulae with real trading and valuation practice.
Risk, Hedging, and ImplementationThe final sections focus on duration, convexity, key-rate exposure, lattice-based delta and vega, scenario analysis, parallel curve shifts, and hedge ratios for bonds and interest rate options. Practical guidance covers node and cash-flow data structures, tree-building pseudocode, numerical stability, rounding, convergence, independent validation, and reconciliation.
Suitable for students, practitioners, analysts, and developers, this is a hands-on reference for moving from market inputs to calibrated models, defensible prices, and informed risk decisions. The integrated case study brings the full process together, from market quotes and curve construction to an option-adjusted value.