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-rw-r--r--content/know/concept/quantum-teleportation/index.pdc6
1 files changed, 5 insertions, 1 deletions
diff --git a/content/know/concept/quantum-teleportation/index.pdc b/content/know/concept/quantum-teleportation/index.pdc
index 3287544..b4394c9 100644
--- a/content/know/concept/quantum-teleportation/index.pdc
+++ b/content/know/concept/quantum-teleportation/index.pdc
@@ -97,7 +97,7 @@ $$\begin{aligned}
&= \alpha \ket{1} + \beta \ket{0}
\qquad \quad
\hat{\sigma}_x \hat{\sigma}_z \ket{q}
- = \alpha \ket{0} - \beta \ket{1}
+ = \alpha \ket{1} - \beta \ket{0}
\end{aligned}$$
Consequently, Alice and Bob are sharing (or, to be precise, seeing different sides of)
@@ -143,3 +143,7 @@ the entangled $\ket*{\Phi^{+}}_{AB}$ state must be distributed in advance,
and Alice' declaration of her result is sent classically.
Before receiving that, Bob only sees his side of the maximally entangled
Bell state $\ket*{\Phi^{+}}_{AB}$, which contains nothing of $\ket{q}$.
+
+
+## References
+1. N. Brunner, *Quantum information theory: lecture notes*, 2019.