典型文献
Spatiotemporal Fourier transform with femtosecond pulses for on-chip devices
文献摘要:
On-chip manipulation of the spatiotemporal characteristics of optical signals is important in the transmission and processing of information. However, the simultaneous modulation of on-chip optical pulses, both spatially at the nano-scale and temporally over ultra-fast intervals, is challenging. Here, we propose a spatiotemporal Fourier transform method for on-chip control of the propagation of femtosecond optical pulses and verify this method employing surface plasmon polariton (SPP) pulses on metal surface. An analytical model is built for the method and proved by numerical simulations. By varying space- and frequency-dependent parameters, we demonstrate that the traditional SPP focal spot may be bent into a ring shape, and that the direction of propagation of a curved SPP-Airy beam may be reversed at certain moments to create an S-shaped path. Compared with conventional spatial modulation of SPPs, this method offers potentially a variety of extraordinary effects in SPP modulation especially associated with the temporal domain, thereby providing a new platform for on-chip spatiotemporal manipulation of optical pulses with applications including ultrafast on-chip photonic information processing, ultrafast pulse/beam shaping, and optical computing.
文献关键词:
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作者姓名:
Yulong Wang;Changjun Min;Yuquan Zhang;Xiaocong Yuan
作者机构:
Nanophotonics Research Centre,Shenzhen Key Laboratory of Micro-Scale Optical Information Technology&Institute of Microscale Optoelectronics,Shenzhen University,Shenzhen 518060,China;Songshan Lake Materials Laboratory,Dongguan 523808,China
文献出处:
引用格式:
[1]Yulong Wang;Changjun Min;Yuquan Zhang;Xiaocong Yuan-.Spatiotemporal Fourier transform with femtosecond pulses for on-chip devices)[J].光电进展(英文版),2022(11):45-53
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AB值:
0.564914
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