50,705 research outputs found
Iterative Optimization of Quantum Error Correcting Codes
We introduce a convergent iterative algorithm for finding the optimal coding
and decoding operations for an arbitrary noisy quantum channel. This algorithm
does not require any error syndrome to be corrected completely, and hence also
finds codes outside the usual Knill-Laflamme definition of error correcting
codes. The iteration is shown to improve the figure of merit "channel fidelity"
in every step.Comment: 5 pages, 2 figures, REVTeX 4; stability of algorithm include
Tilted phase space measurements
We show that the phase shift of {\pi}/2 is crucial for the phase space
translation covariance of the measured high-amplitude limit observable in
eight-port homodyne detection. However, for an arbitrary phase shift {\theta}
we construct explicitly a different nonequivalent projective representation of
R such that the observable is covariant with respect to this
representation. As a result we are able to determine the measured observable
for an arbitrary parameter field and phase shift. Geometrically the change in
the phase shift corresponds to the tilting of one axis in the phase space of
the system.Comment: 4 pages, 4 figure
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