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Equation 15 · Part 2 · A Horizon Is a Toll Booth, Not a Loophole

Symbol pi

N≤2πℏ(⟨H⟩−E0)tN \leq \frac{2}{\pi\hbar}\left(\langle H\rangle-E_0\right) t
π\pi

What this part means

pi occurs below the fraction bar. The quantity above the bar is divided by this expression; zero is excluded as a denominator.

Its job in the formula

pi occurs below the fraction bar. The quantity above the bar is divided by this expression; zero is excluded as a denominator.

The passage around this formula

where ⟨\langle H⟩\rangle is the mean energy in the evolving state and E0E_0 is the ground-state energy of H [ 2 , 1 ] . Inverting this gives a maximum rate of orthogonal state changes per unit proper time, 2(⟨\langle H⟩\rangle-E0E_0)/π\piℏ\hbar , and Giovannetti, Lloyd, and Maccone showed that for a periodic evolution this rate integrates cleanly: a system with mean energy ⟨\langle H⟩\rangle-E0E_0 above its ground state can pass through at most N≤2πℏ(⟨H⟩−E0)tN \leq \frac{2}{\pi\hbar}\left(\langle H\rangle-E_0\right) t. mutually orthogonal states in elapsed time t [ 3 ] . Lloyd used the same bound to price computation itself: no amount of clever engineering lets a system with energy E execute logical operations faster than about 2E/π\piℏ\hbar per second, a…

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Learn the underlying idea

A variable is a named place for a value. Its letter is a local label: x can mean position in one formula and a data point in another.

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Sources cited in the surrounding passage

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