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典型文献
Ultra-power-efficient heterogeneous Ⅲ-Ⅴ/Si MOSCAP(de-)interleavers for DWDM optical links
文献摘要:
We discuss the design and demonstration of various Ⅲ-Ⅴ/Si asymmetric Mach-Zehnder interferometer(AMZI)and ring-assisted AMZI(de-)interleavers operating at O-band wavelengths with 65 GHz channel spacing.The wafer-bonded Ⅲ-Ⅴ/Si metal-oxide-semiconductor capacitor(MOSCAP)structure facilitates ultra-low-power phase tuning on a heterogeneous platform that allows for complete monolithic transceiver photonic integration.The second-and third-order MOSCAP AMZI(de-)interleavers exhibit cross-talk(XT)levels down to-22 dB and-32 dB with tuning powers of 83.0 nW and 53.0 nW,respectively.The one-,two-,and three-ring-assisted MOSCAP AMZI(de-)interleavers have XT levels down to-27 dB,-22 dB,and-20 dB for tuning powers of 10.0 nW,7220.0 nW,and 33.6 nW,respectively.The leakage current density is measured to be in the range of 1.6-27 μA/cm2.To the best of our knowledge,we have demonstrated for the first time,athermal Ⅲ-Ⅴ/Si MOSCAP(de-)interleavers with the lowest XT and reconfiguration power consumption on a silicon platform.
文献关键词:
作者姓名:
STANLEY CHEUNG;GEZA KURCZVEIL;YINGTAO HU;MINGYE FU;YUAN YUAN;DI LIANG;RAYMOND G.BEAUSOLEIL
作者机构:
Hewlett Packard Labs,Hewlett Packard Enterprise,Milpitas,California 95035,USA
引用格式:
[1]STANLEY CHEUNG;GEZA KURCZVEIL;YINGTAO HU;MINGYE FU;YUAN YUAN;DI LIANG;RAYMOND G.BEAUSOLEIL-.Ultra-power-efficient heterogeneous Ⅲ-Ⅴ/Si MOSCAP(de-)interleavers for DWDM optical links)[J].光子学研究(英文),2022(02):前插9-前插21
A类:
MOSCAP,interleavers,AMZI,athermal
B类:
Ultra,efficient,heterogeneous,Si,DWDM,optical,links,We,discuss,design,demonstration,various,asymmetric,Mach,Zehnder,interferometer,ring,assisted,operating,band,wavelengths,GHz,channel,spacing,wafer,bonded,metal,oxide,semiconductor,capacitor,structure,facilitates,ultra,phase,tuning,platform,that,allows,complete,monolithic,transceiver,photonic,integration,second,third,order,exhibit,cross,talk,XT,levels,down,dB,powers,nW,respectively,one,two,three,have,leakage,current,density,measured,range,To,best,our,knowledge,demonstrated,first,lowest,reconfiguration,consumption,silicon
AB值:
0.477508
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