When a cello and an oboe play the same note, you hear the same pitch — but you instantly know they are different instruments. The pitch is the same; the timbre (the tone color, the texture of the sound) is different. Those two pieces of information are tangled together inside every sound wave, and untangling them is one of the central tasks of audio analysis.
The surprising answer comes from a 1963 paper by Bogert, Healy, and Tukey. They coined the word cepstrum — an anagram of spectrum — for the result of a peculiar two-step operation: take the Fourier transform of a sound, take the logarithm of its magnitude, and then take the Fourier transform again.
That second transform turns the spectrum's repetitive harmonic pattern — the tell-tale sign of a pitched sound — into a single sharp spike. The spike's position on the new axis (which they playfully called the quefrency axis, an anagram of frequency) tells you the period of the original pitch, cleanly separated from the spectral envelope that carries timbre. Pitch and timbre, once hopelessly entangled in the waveform, now live in different regions of the cepstrum.
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