Sporadic-Slot Photonic-Crystal Waveguide for All-Optical Buffers With Low-Dispersion, Distortion, and Insertion Loss

A novel structure is studied with implanting sporadic slots inside a photonic crystal waveguide (PCW) to form sporadic-slot PCW (SSPCW) for realizing compact, all-optical buffers with lowdispersion, distortion, and attenuation (DDA). We implement the first demonstration that, to the best of our know...

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Main Authors: Sayed Elshahat, Israa Abood, Zixian Liang, Jihong Pei, Zhengbiao Ouyang
Format: Article
Language:English
Published: IEEE 2020-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9057605/
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spelling doaj-394e78d2e6c548359aebff1fc657e8d92021-03-30T01:39:29ZengIEEEIEEE Access2169-35362020-01-018776897770010.1109/ACCESS.2020.29860829057605Sporadic-Slot Photonic-Crystal Waveguide for All-Optical Buffers With Low-Dispersion, Distortion, and Insertion LossSayed Elshahat0https://orcid.org/0000-0001-6598-4790Israa Abood1Zixian Liang2Jihong Pei3Zhengbiao Ouyang4Institute of Microscale Optoelectronics, Shenzhen University, Shenzhen, ChinaCollege of Physics and Optoelectronics Engineering, Shenzhen University, Shenzhen, ChinaInstitute of Microscale Optoelectronics, Shenzhen University, Shenzhen, ChinaCollege of Electronics and Information Technology, Shenzhen University, Shenzhen, ChinaCollege of Physics and Optoelectronics Engineering, Shenzhen University, Shenzhen, ChinaA novel structure is studied with implanting sporadic slots inside a photonic crystal waveguide (PCW) to form sporadic-slot PCW (SSPCW) for realizing compact, all-optical buffers with lowdispersion, distortion, and attenuation (DDA). We implement the first demonstration that, to the best of our knowledge, the SSPCW works for both TEand TM-modes all-optical buffers and slow-light waveguides. High buffer performance and wider transmission bandwidth in telecommunication band are obtained, which are guaranteed through bit rate optimization that exceeded 2 Tb/s for both TE and TM modes in ultra-low dispersion region which is 20 times greater than that required for 5G mobile communications and it is also useful for all-optical signal processing. The storage length of 1 bit is obtained as 4.5202 μm for TE mode and 6.0525 μm for TM mode. Moreover, a low relative pulse distortion of 0.0801% μm-1 along the propagation path per unit length is acquired for a 0.63 ps pulse. Besides, the attenuation coefficient of the optical power pulse between the input and output is 0.0170 dB/μm. Additionally, the deigned SSPCW is insensitive for small variations of waveguide parameters and the deviation is virtually negligible between the simulated results and that of the fabricated structures with totally acceptable tolerance below ±3 nm, which is the challenge in the fabrication process of conventional PCW and PCW-cavity.https://ieeexplore.ieee.org/document/9057605/Sporadic-slotsphotonic crystal waveguidedispersiondistortionattenuation
collection DOAJ
language English
format Article
sources DOAJ
author Sayed Elshahat
Israa Abood
Zixian Liang
Jihong Pei
Zhengbiao Ouyang
spellingShingle Sayed Elshahat
Israa Abood
Zixian Liang
Jihong Pei
Zhengbiao Ouyang
Sporadic-Slot Photonic-Crystal Waveguide for All-Optical Buffers With Low-Dispersion, Distortion, and Insertion Loss
IEEE Access
Sporadic-slots
photonic crystal waveguide
dispersion
distortion
attenuation
author_facet Sayed Elshahat
Israa Abood
Zixian Liang
Jihong Pei
Zhengbiao Ouyang
author_sort Sayed Elshahat
title Sporadic-Slot Photonic-Crystal Waveguide for All-Optical Buffers With Low-Dispersion, Distortion, and Insertion Loss
title_short Sporadic-Slot Photonic-Crystal Waveguide for All-Optical Buffers With Low-Dispersion, Distortion, and Insertion Loss
title_full Sporadic-Slot Photonic-Crystal Waveguide for All-Optical Buffers With Low-Dispersion, Distortion, and Insertion Loss
title_fullStr Sporadic-Slot Photonic-Crystal Waveguide for All-Optical Buffers With Low-Dispersion, Distortion, and Insertion Loss
title_full_unstemmed Sporadic-Slot Photonic-Crystal Waveguide for All-Optical Buffers With Low-Dispersion, Distortion, and Insertion Loss
title_sort sporadic-slot photonic-crystal waveguide for all-optical buffers with low-dispersion, distortion, and insertion loss
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2020-01-01
description A novel structure is studied with implanting sporadic slots inside a photonic crystal waveguide (PCW) to form sporadic-slot PCW (SSPCW) for realizing compact, all-optical buffers with lowdispersion, distortion, and attenuation (DDA). We implement the first demonstration that, to the best of our knowledge, the SSPCW works for both TEand TM-modes all-optical buffers and slow-light waveguides. High buffer performance and wider transmission bandwidth in telecommunication band are obtained, which are guaranteed through bit rate optimization that exceeded 2 Tb/s for both TE and TM modes in ultra-low dispersion region which is 20 times greater than that required for 5G mobile communications and it is also useful for all-optical signal processing. The storage length of 1 bit is obtained as 4.5202 μm for TE mode and 6.0525 μm for TM mode. Moreover, a low relative pulse distortion of 0.0801% μm-1 along the propagation path per unit length is acquired for a 0.63 ps pulse. Besides, the attenuation coefficient of the optical power pulse between the input and output is 0.0170 dB/μm. Additionally, the deigned SSPCW is insensitive for small variations of waveguide parameters and the deviation is virtually negligible between the simulated results and that of the fabricated structures with totally acceptable tolerance below ±3 nm, which is the challenge in the fabrication process of conventional PCW and PCW-cavity.
topic Sporadic-slots
photonic crystal waveguide
dispersion
distortion
attenuation
url https://ieeexplore.ieee.org/document/9057605/
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AT israaabood sporadicslotphotoniccrystalwaveguideforallopticalbufferswithlowdispersiondistortionandinsertionloss
AT zixianliang sporadicslotphotoniccrystalwaveguideforallopticalbufferswithlowdispersiondistortionandinsertionloss
AT jihongpei sporadicslotphotoniccrystalwaveguideforallopticalbufferswithlowdispersiondistortionandinsertionloss
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