Efficient and wideband acousto-optic modulation on thin-film lithium niobate for microwave-to-photonic conversion

被引:0
|
作者
AHMED E.HASSANIEN [1 ]
STEFFEN LINK [1 ]
YANSONG YANG [1 ]
EDMOND CHOW [1 ]
LYNFORD L.GODDARD [1 ]
SONGBIN GONG [1 ]
机构
[1] Holonyak Micro and Nanotechnology Laboratory,Department of Electrical and Computer Engineering,University of Illinois at Urbana-Champaign
关键词
Efficient and wideband acousto-optic modulation on thin-film lithium niobate for microwave-to-photonic conversion;
D O I
暂无
中图分类号
TN761 [调制技术与调制器]; TN20 [一般性问题];
学科分类号
0803 ; 080401 ; 080901 ; 080902 ;
摘要
Microwave photonics, a field that crosscuts microwave/millimeter-wave engineering with optoelectronics, has sparked great interest from research and commercial sectors. This multidisciplinary fusion can achieve ultrawide bandwidth and ultrafast speed that were considered impossible in conventional chip-scale microwave/millimeterwave systems. Conventional microwave-to-photonic converters, based on resonant acousto-optic modulation,produce highly efficient modulation but sacrifice bandwidth and limit their applicability for most real-world microwave signal-processing applications. In this paper, we build highly efficient and wideband microwaveto-photonic modulators using the acousto-optic effect on suspended lithium niobate thin films. A wideband microwave signal is first piezoelectrically transduced using interdigitated electrodes into Lamb acoustic waves, which directly propagates across an optical waveguide and causes refractive index pertp urbation through the photoelastic effect. This approach is power-efficient, with phase shifts up to 0.0166 rad∕m W over a 45μm modulation length and with a bandwidth up to 140 MHz at a center frequency of 1.9 GHz. Compared to the state-ofthe-art, a 9×more efficient modulation has been achieved by optimizing the acoustic and optical modes and their interactions.
引用
收藏
页码:1182 / 1190
页数:9
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