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Examples by Method

Use method routes when you know what kind of calculation is needed but can choose among several model systems. This page points to the most transferable example families.

MethodExample RouteCanonical Check
Normalize a stateNormalization ExamplesNormalization Formula
Compute an expectation valueExpectation-Value ExamplesExpectation Value Formula
Diagonalize a matrix HamiltonianMatrix-Mechanics ExamplesDiagonalization
Use spinor algebraSpin ExamplesSpin-Half Matrices
Add angular momentaSpin ExamplesAddition of Angular Momentum
Apply perturbation theoryPerturbation-Theory ExamplesFirst-Order Perturbation Theory
Compute scattering dataScattering ExamplesScattering Cross Section
Trace out a subsystemDensity-Matrix ExamplesPartial Trace

The formula card is usually too compressed to teach the method. For example, the first-order energy shift

En(1)=⟨n(0)∣V∣n(0)⟩E_n^{(1)}=\langle n^{(0)}\rvert V\lvert n^{(0)}\rangle

is only usable after checking that the unperturbed state is normalized, nondegenerate or treated in the correct degenerate subspace, and paired with a small parameter. The example route should expose those decisions.

  • Normalization of a probability density is not the same as normalization of a scattering amplitude.
  • Diagonalizing a Hamiltonian is not enough; measurement probabilities require expanding the state in the eigenbasis.
  • A spin measurement along z^\hat z and one along x^\hat x use different projectors.
  • Perturbation theory requires a controlled expansion parameter, not just a hard exact problem.
  • A partial trace requires a tensor-factor convention before any indices are summed.
  1. Start with Normalization Examples and Expectation-Value Examples.
  2. Move to Matrix-Mechanics Examples and Spin Examples for finite-dimensional bookkeeping.
  3. Use Perturbation-Theory Examples after exact eigenvalue examples are comfortable.
  4. Use Scattering Examples and Density-Matrix Examples once currents and traces are no longer mysterious.
  • R. Shankar, Principles of Quantum Mechanics, 2nd ed., Springer, 1994.
  • J. J. Sakurai and J. Napolitano, Modern Quantum Mechanics, 3rd ed., Cambridge University Press, 2020.
  • C. Cohen-Tannoudji, B. Diu, and F. Laloe, Quantum Mechanics, Wiley, 1977.
  1. A problem asks for the probability of measuring spin up along x^\hat x after preparing spin up along z^\hat z. Should you begin with a matrix-diagonalization example or a spin example?
Solution

Begin with Spin Examples. The calculation uses finite-dimensional vectors, but the central issue is the relation between measurement axes and spinor bases.