A Multi-Channel Frequency Router Based on an Optimization Algorithm and Dispersion Engineering

被引:6
作者
Yuan, Hongyi [1 ]
Zhang, Nianen [1 ]
Zhang, Hongyu [1 ]
Lu, Cuicui [1 ]
机构
[1] Beijing Inst Technol, Sch Phys, Key Lab Adv Optoelect Quantum Architecture & Measu, Beijing Key Lab Nanophoton & Ultrafine Optoelect S, Beijing 100081, Peoples R China
基金
中国国家自然科学基金;
关键词
multi-channel; frequency router; topological optimization; synthetic dimension; INVERSE DESIGN; WAVE-GUIDE; TOPOLOGY OPTIMIZATION; COMPACT;
D O I
10.3390/nano13142133
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Integrated frequency routers, which can guide light with different frequencies to different output ports, are an important kind of nanophotonic device. However, frequency routers with both a compact size and multiple channels are difficult to realize, which limits the application of these frequency routers in nanophotonics. Here, a kind of bandgap optimization algorithm, which consists of the finite element method and topology optimization, is proposed to design a multi-channel frequency router. Channels supporting photonic edge states with different frequencies are built through the synthetic dimension of translational deformation. Due to the help of the developed optimization algorithms, the number of channels and output ports can be increased up to nine while maintaining ultracompact device size. The device operates within a working band of 0.585-0.665 c/a, corresponding to 1.504-1.709 & mu;m when the lattice constant is set as 1 & mu;m, covering the telecom wavelength of 1.55 & mu;m. The average crosstalk is about -11.49 dB. The average extinction ratio is around 16.18 dB. Because the bus of the device can be regarded as a part of a topological rainbow, the results show that the structure is robust to fabrication errors. This method is general, which can be used for different materials and different frequency ranges. The all-dielectric planar configuration of our router is compact, robust, and easy to integrate, providing a new method for on-chip multi-channel broadband information processing.
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页数:11
相关论文
共 59 条
[1]   Photonic Inverse Design of On-Chip Microresonators [J].
Ahn, Geun Ho ;
Yang, Ki Youl ;
Trivedi, Rahul ;
White, Alexander D. ;
Su, Logan ;
Skarda, Jinhie ;
Vuckovic, Jelena .
ACS PHOTONICS, 2022, 9 (06) :1875-1881
[2]  
Bendsoe MP., 2003, Topology Optimization: Theory Methods and Applications, DOI 10.1007/978-3-662-05086-6
[3]  
Bourdine A.V., 2020, P OPTICAL TECHNOLOGI, V1516, P478
[4]   Design of a large bandwidth 2 x 2 interferometric switching cell based on a sub-wavelength grating [J].
Brunetti, Giuseppe ;
Marocco, Giovanna ;
Di Benedetto, Alessandro ;
Giorgio, Agostino ;
Armenise, Mario Nicola ;
Ciminelli, Caterina .
JOURNAL OF OPTICS, 2021, 23 (08)
[5]   Multifunctional volumetric meta-optics for color and polarization image sensors [J].
Camayd-Munoz, Philip ;
Ballew, Conner ;
Roberts, Gregory ;
Faraon, Andrei .
OPTICA, 2020, 7 (04) :280-283
[6]   Inverse design and demonstration of an ultracompact broadband dual-mode 3 dB power splitter [J].
Chang, Weijie ;
Ren, Xinshu ;
Ao, Yingquan ;
Lu, Longhui ;
Cheng, Mengfan ;
Deng, Lei ;
Liu, Deming ;
Zhang, Minming .
OPTICS EXPRESS, 2018, 26 (18) :24134-24143
[7]   Creating acoustic topological insulators through topology optimization [J].
Chen, Yafeng ;
Meng, Fei ;
Huang, Xiaodong .
MECHANICAL SYSTEMS AND SIGNAL PROCESSING, 2021, 146
[8]   Inverse Design of Photonic Topological Insulators with Extra-Wide Bandgaps [J].
Chen, Yafeng ;
Meng, Fei ;
Jia, Baohua ;
Li, Guangyao ;
Huang, Xiaodong .
PHYSICA STATUS SOLIDI-RAPID RESEARCH LETTERS, 2019, 13 (09)
[9]   Topology optimization of photonic crystals with exotic properties resulting from Dirac-like cones [J].
Chen, Yafeng ;
Meng, Fei ;
Li, Guangyao ;
Huang, Xiaodong .
ACTA MATERIALIA, 2019, 164 :377-389
[10]  
Christiansen RE, 2021, J OPT SOC AM B, V38, P496, DOI 10.1364/JOSAB.406048