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The plasmonic BTO-on-SiN platform – beyond 200 GBd modulation for optical communications
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作者 Manuel Kohli Daniel Chelladurai +13 位作者 Laurenz Kulmer Tobias Blatter Yannik Horst Killian Keller Michael Doderer Joel Winiger David Moor Andreas Messner Tatiana Buriakova Clarissa Convertino felix eltes Yuriy Fedoryshyn Ueli Koch Juerg Leuthold 《Light: Science & Applications》 2025年第12期4214-4224,共11页
An integrated photonics platform that offers high-speed modulators in addition to low-loss and versatile passive components is highly sought after for different applications ranging from AI to next-generation Tbit/s l... An integrated photonics platform that offers high-speed modulators in addition to low-loss and versatile passive components is highly sought after for different applications ranging from AI to next-generation Tbit/s links in optical fiber communication. For this purpose, we introduce the plasmonic BTO-on-SiN platform for high-speed electro-optic modulators. This platform combines the advantages provided by low-loss silicon nitride (SiN) photonics with the highly nonlinear barium titanate (BTO) as the active material. Nanoscale plasmonics enables high-speed modulators operating at electro-optical bandwidths up to 110 GHz with active lengths as short as 5 µm. Here, we demonstrate three different modulators: a 256 GBd C-band Mach-Zehnder (MZ) modulator, a 224 GBd C-band IQ modulator – being both the first BTO IQ and the first IQ modulator on SiN for data communication – and finally, a 200 GBd O-band racetrack (RT) modulator. With this approach we show record data rates of 448 Gbit/s with the IQ modulator and 340 Gbit/s with the MZ modulator. Furthermore, we demonstrate the first plasmonic RT modulator with BTO and how it is ideally suited for low complexity communication in the O-band with low device loss of 2 dB. This work leverages the SiN platform and shows the potential of this technology to serve as a solution to combat the ever-increasing demand for fast modulators. 展开更多
关键词 barium titanate silicon nitride plasmonic BTO SiN active m optical fiber communication passive components optical communications
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