Self-error-rejecting photonic qubit transmission in polarization-spatial modes with linear optical elements
We present an original self-error-rejecting photonic qubit transmission scheme for both the polarization and spatial states of photon systems transmitted over collective noise channels. In our scheme, we use simple linear-optical elements, including half-wave plates, 50:50 beam splitters, and polari...
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Veröffentlicht in: | Science China. Physics, mechanics & astronomy mechanics & astronomy, 2017-12, Vol.60 (12), p.12-18, Article 120312 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | We present an original self-error-rejecting photonic qubit transmission scheme for both the polarization and spatial states of photon systems transmitted over collective noise channels. In our scheme, we use simple linear-optical elements, including half-wave plates, 50:50 beam splitters, and polarization beam splitters, to convert spatial-polarization modes into different time bins. By using postselection in different time bins, the success probability of obtaining the uncorrupted states approaches 1/4 for singlephoton transmission, which is not influenced by the coefficients of noisy channels. Our self-error-rejecting transmission scheme can be generalized to hyperentangled n-photon systems and is useful in practical high-capacity quantum communications with photon systems in two degrees of freedom. |
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ISSN: | 1674-7348 1869-1927 |
DOI: | 10.1007/s11433-017-9091-0 |