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Quantum Algorithms
Faithful qubit transmission against collective noise without ancillary qubits
arXiv
Authors: Xi-Han Li, Fu-Guo Deng, Hong-Yu Zhou
Year
2007
Paper ID
49505
Status
Preprint
Abstract Read
~2 min
Abstract Words
105
Citations
N/A
Abstract
We present a faithful qubit transmission scheme with linear optics against collective noise, not resorting to ancillary qubits. Its set-up is composed of three unbalanced polarization interferometers, based on a polarizing beam splitter, a beam splitter and a half-wave plate, which makes this scheme more feasible than others with present technology. The fidelity of successful transmission is 1, independent of the parameters of the collective noise, and the success probability for obtaining an uncorrupted state can be improved to 100% with some time delayers. Moreover, this scheme has some good applications in one-way quantum communication for rejecting the errors caused by the collective noise in quantum channel.
Why This Paper Matters
- It adds a 2007 reference point for readers tracking recent quantum research.
- We present a faithful qubit transmission scheme with linear optics against collective noise, not resorting to ancillary qubits.
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