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5.7 Given Hamiltonian H = oz, and state ly (to)) = Zz (10) + |1)), evaluate, in the computational basis, density matrix p(t) = U(t,
5.7 Given Hamiltonian H = oz, and state ly (to)) = Zz (10) + |1)), evaluate, in the computational basis, density matrix p(t) = U(t, to) p(to)U(t, to) where U(t, to) is the time development operator. You can assume that to = 0. 5.7 Given Hamiltonian H = oz, and state ly (to)) = Zz (10) + |1)), evaluate, in the computational basis, density matrix p(t) = U(t, to) p(to)U(t, to) where U(t, to) is the time development operator. You can assume that to = 0
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