Laser & Optoelectronics Progress, Volume. 61, Issue 19, 1913017(2024)
An Ultra-Large Bandwidth Variable Optical Attenuator Based on Silica Platform (Invited)
[1] Banerjee A, Park Y, Clarke F et al. Wavelength-division-multiplexed passive optical network (WDM-PON) technologies for broadband access: a review[J]. Journal of Optical Networking, 4, 737-758(2005).
[3] Yuan P, Wu Y D, Wang Y et al. Monolithic integration of a 16-channel VMUX on SOI platform[J]. Journal of Semiconductors, 36, 084005(2015).
[4] Pei Y, Yue W, Wu Y D et al. Monolithic integration of a wavelength division multiplexer/demultiplexer and electro-absorption VOAs based on 3 μm-SOI[J]. Infrared and Laser Engineering, 48, 818004(2019).
[5] Zhang S, Dong Y H, Zhang J N et al. An erbium-doped fiber amplifier with tunable gain-clamping in the extended L-band[J]. IEEE Photonics Technology Letters, 36, 617-620(2024).
[7] Chen P Y, Huang W K, Feng Q X et al. MEMS-based metamaterial grating waveguide for tunable optical attenuator and modulator applications[J]. Optics & Laser Technology, 156, 108488(2022).
[8] Lagosh A, Guldimann B, Huszka G et al. MEMS shutter based variable optical attenuator integrated with large core multimode rectangular waveguides[C], 961-963(2021).
[9] Zhou J W, Liang J Q, Liang Z Z et al. Tunable two-dimensional photonic crystals cavity attenuator using liquid-crystal[J]. Chinese Journal of Luminescence, 34, 245-250(2013).
[10] Sun S J, Lian T H, Sun X Q et al. Dual-mode variable optical attenuator based on polymer waveguide Mach-Zehnder interferometer[J]. IEEE Photonics Technology Letters, 35, 442-445(2023).
[11] Yin Y X, Yao M K, Ding Y Z et al. Polymer/silica hybrid waveguide thermo-optic VOA covering O-band[J]. Micromachines, 13, 511(2022).
[12] Wu Q Q, Zhou L J, Sun X M et al. Silicon thermo-optic variable optical attenuators based on Mach-Zehnder interference structures[J]. Optics Communications, 341, 69-73(2015).
[14] Wang L F, Song Q Q, Wu J Y et al. Low-power variable optical attenuator based on a hybrid SiON-polymer S-bend waveguide[J]. Applied Optics, 55, 969-973(2016).
[17] Yuan P, Wang Y, Wu Y D et al. Variable optical attenuators based on SOI with 3 μm top silicon layer[J]. Applied Optics, 58, 4630-4636(2019).
Get Citation
Copy Citation Text
Guoyan Zeng, Yuexin Yin, Yingzhi Ding, Xiaoqiang Sun, Daming Zhang. An Ultra-Large Bandwidth Variable Optical Attenuator Based on Silica Platform (Invited)[J]. Laser & Optoelectronics Progress, 2024, 61(19): 1913017
Category: Integrated Optics
Received: Jun. 28, 2024
Accepted: Aug. 20, 2024
Published Online: Oct. 16, 2024
The Author Email:
CSTR:32186.14.LOP241568