scholarly journals A compact 1×3 two-mode selective silicon photonic router/switch using two tunable phase shifters

Author(s):  
Duong Duy ◽  
Truong Dung ◽  
Dang Bac ◽  
Nguyen Binh ◽  
Nguyen Hung ◽  
...  
2021 ◽  
Author(s):  
MADHUSUDAN MISHRA ◽  
Nikhil Das

In this letter, we propose a new approach of hetero-cladding for realization of compact CMOS compatible silicon photonic directional couplers. The proposed hetero-cladding comprises ferroelectric BaTiO<sub>3</sub> (BTO) and SiO<sub>2</sub> to control the evanescent mode within the structure. The results show very small and identical coupling length for both TE and TM modes with reduced device cross-section, which promises for a huge reduction in the footprint of both conventional and programmable photonic integrated circuits. The concept can also be utilized to design compact, low loss and energy efficient phase shifters, other types of couplers, sensors etc.


2021 ◽  
Author(s):  
Pierre Edinger ◽  
Alain Takabayashi ◽  
Carlos Errando-Herranz ◽  
Umar Khan ◽  
Hamed Sattari ◽  
...  

2021 ◽  
Author(s):  
MADHUSUDAN MISHRA ◽  
Nikhil Das

<p><i>Abstract</i>— The present work proposes a new approach of hetero-cladding for silicon photonic directional couplers and outlines its contributions towards realization of a compact, tunable and energy efficient directional coupler. The proposed hetero-cladding comprises ferroelectric BaTiO<sub>3</sub> (BTO) and SiO<sub>2</sub>, to control the evanescent mode within the structure. The results show very small and identical coupling length for both TE and TM modes with reduced device cross-section, which promises for a huge reduction in the footprint of both conventional and programmable photonic integrated circuits (PICs). The proposed concept could also be utilized to design compact, low loss and energy efficient phase shifters and other types of couplers.</p>


2021 ◽  
Author(s):  
MADHUSUDAN MISHRA ◽  
Nikhil Das

In this letter, we propose a new approach of hetero-cladding for realization of compact CMOS compatible silicon photonic directional couplers. The proposed hetero-cladding comprises ferroelectric BaTiO<sub>3</sub> (BTO) and SiO<sub>2</sub> to control the evanescent mode within the structure. The results show very small and identical coupling length for both TE and TM modes with reduced device cross-section, which promises for a huge reduction in the footprint of both conventional and programmable photonic integrated circuits. The concept can also be utilized to design compact, low loss and energy efficient phase shifters, other types of couplers, sensors etc.


2020 ◽  
Vol 26 (5) ◽  
pp. 1-8 ◽  
Author(s):  
Antonio Ribeiro ◽  
Sibert Declercq ◽  
Umar Khan ◽  
Mi Wang ◽  
Lukas Van Iseghem ◽  
...  

2020 ◽  
Vol 10 (23) ◽  
pp. 8688
Author(s):  
Marouan Kouissi ◽  
Benoit Charbonnier ◽  
Catherine Algani

Building a large-scale Mach-Zehnder-based silicon photonic switch circuit (LS-MZS) requires an appropriate choice of architecture. In this work, we propose, for the first time to our knowledge, a single metric that can be used to compare different topologies. We propose an accurate analytical model of the signal-to-crosstalk ratio (SCR) that highlights the performance limitations of the main building blocks: Mach-Zehnder interferometers (MZI) and waveguide crossings. It is based on the cumulative crosstalk and total insertion loss of the LS-MZS. Four different architectures: Beneš, dilated Beneš, switch and select, double-layer network were studied for the reason that they are mainly referenced in the literature. We compared them using our developed SCR indicator. With reference to the state-of-the-art technology, the analysis of the four architectures using SCR showed that, on a large scale, a high number of waveguide crossings significantly affects the performance of the switch matrix. Moreover, better performance was reached using the double-layer-network architecture. Then, we presented a 2 × 2 MZI using two electro-optic phase shifters and a waveguide crossing realized in LETI’s silicon photonics technology. Measured performances were quite good: the switch circuit had a crosstalk of −31.3 dB and an insertion loss estimated to be less than 1.31 dB.


2021 ◽  
Author(s):  
Zi Wang ◽  
Lorry Chang ◽  
Feifan Wang ◽  
Tiantian Li ◽  
Tingyi Gu

Abstract Miniaturized image classifiers are potential for revolutionizing their applications in optical communication, autonomous vehicles, and healthcare. With deep diffractive neuron networks trained subwavelength structures, we demonstrate image recognitions by a passive silicon photonic metasystem. The metasystem implements high-throughput vector-by-matrix multiplications, enabled by 103 passive subwavelength phase shifters as weight elements in 1 mm2 footprint. The large weight matrix size incorporates the fabrication variation related uncertainties, and thus the pre-trained metasystem can perform machine learning tasks without post-tuning. A 15-pixel spatial pattern classifier reaches near 90% accuracy with femtosecond inputs. The metasystem’s superior parallelism (1015 bit/s) dramatically expand data processing capability of photonic integrated circuits, towards next generation low latency and low power photonic accelerators compatible with complementary metal-oxide-semiconductor manufacturing.


Author(s):  
Francis Smith ◽  
Wuxiucheng Wang ◽  
Xiaodong Wang ◽  
Yaqian Li ◽  
Xiulan Cheng ◽  
...  

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