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Quantum information transfer using photons
DOI:10.1038/nphoton.2014.53.png)
摘要
En 中文
Optical communication channels have redefined the scope and applications of classical computing; similarly, photonic transfer of quantum information promises to open new horizons for quantum computing. The implementation of light-matter interfaces that preserve quantum information is technologically challenging, but key building blocks for such devices have recently been demonstrated by several research groups. Here, we outline the theoretical framework for information transfer between the nodes of a quantum network, review the current experimental state of the art and discuss the prospects for hybrid systems currently in development.
Keyword:
SINGLE-ATOM
TRAPPED IONS
ENTANGLEMENT DISTRIBUTION
HERALDED ENTANGLEMENT
TELECOM-WAVELENGTH
ROOM-TEMPERATURE
OPTICAL CAVITY
STATE TRANSFER
LINEAR OPTICS
DOT SPIN
期刊
IF:
32.9
论文数:
4.3K
被引数:
6.1W
机构
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