Optimal design for universal multiport interferometers

Оптимальная схема универсальных многопортовых интерферометров
Ian A. Walmsley, William R. Clements, Peter C. Humphreys, Benjamin J. Metcalf, W. Steven Kolthammer
2016-12-02

Reck designbeam splitters and phase shiftersoptical depth reductionrobustness to optical lossesuniversal multiport interferometers
Universal multiport interferometers, which can be programmed to implement any linear transformation between multiple channels, are emerging as a powerful tool for both classical and quantum photonics. These interferometers are typically composed of a regular mesh of beam splitters and phase shifters, allowing for straightforward fabrication using integrated photonic architectures and ready scalability. The current, standard design for universal multiport interferometers is based on work by Reck et al. [Phys. Rev. Lett.73, 58 (1994)PRLTAO0031-900710.1103/PhysRevLett.73.58]. We demonstrate a new design for universal multiport interferometers based on an alternative arrangement of beam splitters and phase shifters, which outperforms that by Reck et al. Our design requires half the optical depth of the Reck design and is significantly more robust to optical losses.
1
A new design for universal multiport interferometers is presented based on an alternative arrangement of beam splitters and phase shifters.
2
The design maintains universality, i.e., it can be programmed to implement any linear transformation between multiple channels.
3
The new interferometer architecture is significantly more robust to optical losses than the Reck design.
4
The proposed design requires half the optical depth compared to the standard Reck et al. (1994) design.

Universal multiport interferometers composed of beam splitters and phase shifters

Optimal design arrangement reducing optical depth and improving robustness to optical losses compared to the Reck et al. mesh

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2016-12-02
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Ian A. Walmsley
William R. Clements
Peter C. Humphreys
Benjamin J. Metcalf
W. Steven Kolthammer
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