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Equation 19 · Part 1 · The Clock That Comes Back Wrong by Exactly Its Mass

Symbol T

T(b)=exp⁡(−ib⋅P/ℏ)T(\mathbf b)=\exp(-i\mathbf b\cdot\mathbf P/\hbar)
TT

What this part means

T is part of the quantity the equation computes from the expression on the right.

Its job in the formula

T is part of the quantity the equation computes from the expression on the right.

The passage around this formula

Represent the loop LG\mathcal L_{\rm G} on a Hilbert space. A spatial translation by b\mathbf b is the unitary T(b\mathbf b)=exp⁡(−ib⋅P/ℏ)\exp(-i\mathbf b\cdot\mathbf P/\hbar) , built from the momentum operator P\mathbf P ; a Galilei boost by v\mathbf v is G(v\mathbf v)=exp⁡(−iv⋅K/ℏ)\exp(-i\mathbf v\cdot\mathbf K/\hbar) , built from the boost generator K\mathbf K . The classical loop is T(b\mathbf b)G(v\mathbf v)T(-b\mathbf b)G(-v\mathbf v)=1\mathbb 1 . The operator loop is not automatically the identity, because K\mathbf K and P\mathbf P need not commute as operators even when translations and boosts commute as group elements.

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Learn the underlying idea

A function assigns an output to each allowed input. The expression f(x) means “apply f to x”.

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