Concept Glossary
This concept glossary is a lookup layer for recurring quantum mechanics terms. It gives compact definitions, points to each concept’s canonical teaching page, and records common confusions that often cause mistakes in calculations or interpretation.
Use it when you need a fast reminder. Use the linked canonical homes when you need derivations, examples, assumptions, or edge cases.
Core Entries
Section titled “Core Entries”| Entry | Compact Role | Canonical Route |
|---|---|---|
| Amplitude | Complex number whose squared modulus contributes to a probability. | Probability Amplitudes |
| Born Rule | Rule assigning measurement probabilities from amplitudes, projectors, or density operators. | Born Rule |
| Commutator | Operator difference measuring order-dependence and noncommutativity. | Commutators |
| Decoherence | Suppression of locally observable interference through entanglement with uncontrolled degrees of freedom. | Decoherence Preview |
| Density Matrix | Matrix representation of a density operator for pure or mixed states. | Density Operators |
| Eigenstate | State associated with a sharp eigenvalue of an operator. | Eigenvalues and Eigenstates |
| Entanglement | Non-factorization across a specified subsystem split. | Entangled States |
| Hamiltonian | Generator of time evolution and, in standard settings, the energy observable. | Hamiltonians |
| Hilbert Space | Complete inner-product space used for states and amplitudes. | Hilbert Spaces |
| Observable | Measurable quantity represented by a self-adjoint operator. | Observables |
| Superposition | Linear combination whose physical content depends on amplitudes, basis, and relative phase. | Superposition and Relative Phase |
| Wavefunction | Coordinate-space amplitude representation of a state. | Coordinate Representation |
Entry Anatomy
Section titled “Entry Anatomy”Each entry is deliberately compact. A mature entry should give:
- a one-paragraph definition;
- a formula hook or symbol convention when useful;
- a canonical home for the full treatment;
- common confusions and aliases;
- links to nearby glossary entries;
- references to standard sources.
When to Use Canonical Pages
Section titled “When to Use Canonical Pages”The glossary should not duplicate derivations. For example, the commutator entry can state , but the canonical page explains compatibility, uncertainty relations, and dynamics. The amplitude entry can record , but the Born-rule pages explain measurement contexts and degeneracy.
Common Glossary Mistakes
Section titled “Common Glossary Mistakes”- Treating a compact definition as a complete set of hypotheses.
- Reading formulas without checking normalization, domains, spectra, or basis conventions.
- Confusing a representation-dependent object, such as a matrix or wavefunction, with the underlying abstract state or operator.
- Using a glossary entry to settle an interpretive question that belongs on a longer foundations or measurement page.
References
Section titled “References”- L. E. Ballentine, Quantum Mechanics: A Modern Development, 2nd ed., World Scientific, 2014.
- D. J. Griffiths and D. F. Schroeter, Introduction to Quantum Mechanics, 3rd ed., Cambridge University Press, 2018.
- J. J. Sakurai and J. Napolitano, Modern Quantum Mechanics, 3rd ed., Cambridge University Press, 2020.
- R. Shankar, Principles of Quantum Mechanics, 2nd ed., Springer, 1994.