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Trapped Ion Quantum Computing
Topological photonic orbital angular momentum switch
arXiv
Authors: Xi-Wang Luo, Chuanwei Zhang, Guang-Can Guo, Zheng-Wei Zhou
Year
2017
Paper ID
44993
Status
Preprint
Abstract Read
~2 min
Abstract Words
150
Citations
N/A
Abstract
The large number of available orbital angular momentum (OAM) states of photons provides a unique resource for many important applications in quantum information and optical communications. However, conventional OAM switching devices usually rely on precise parameter control and are limited by slow switching rate and low efficiency. Here we propose a robust, fast and efficient photonic OAM switch device based on a topological process, where photons are adiabatically pumped to a target OAM state on demand. Such topological OAM pumping can be realized through manipulating photons in a few degenerate main cavities and involves only a limited number of optical elements. A large change of OAM at sim 10q can be realized with only q degenerate main cavities and at most 5q pumping cycles. The topological photonic OAM switch may become a powerful device for broad applications in many different fields and motivate novel topological design of conventional optical devices.
Why This Paper Matters
- This paper contributes to the Trapped-Ion Quantum Computing research area in the Quantum Articles archive.
- It adds a 2017 reference point for readers tracking recent quantum research.
- The large number of available orbital angular momentum (OAM) states of photons provides a unique resource for many important applications in quantum information and optical...
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