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Equation 70 · Part 3 · The Atlas That Refuses to Close

Symbol c^2

ωZ=2Mc2ℏ,\omega_Z = \frac{2Mc^2}{\hbar},
c2c^2

What this part means

The square of c: multiply c by itself.

Its job in the formula

c2c^2 occurs above the fraction bar. The numerator is divided by the entire denominator below it.

The passage around this formula

The Newton–Wigner operator was not built for elegance; it was built to repair a specific, observable pathology in the naive Dirac position operator x^\hat{\mathbf x} , the coordinate that appears literally in the Dirac equation. Because a free Dirac wavepacket generically mixes positive- and negative-energy plane-wave components, x^\hat{\mathbf x} 's Heisenberg equation of motion picks up, alongside the ordinary uniform drift, an oscillating term with no classical counterpart: an angular frequency ωZ=2Mc2ℏ\omega_Z = \frac{2Mc^2}{\hbar}. set purely by the rest mass. For an electron this is ωZ\omega_Z ≈\approx 1.55×\times10^{21}\ rad s−1\mathrm{rad\,s^{-1}} , an oscillation period of roughly four zeptoseconds in the particle’s…

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Learn the underlying idea

An exponent tells how a base is used in multiplication. In x³, x is the base and 3 is the exponent: x³ = x × x × x.

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See this notation across published equations →

Sources cited in the surrounding passage

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